WO2017222196A1 - Cable support guide - Google Patents

Cable support guide Download PDF

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Publication number
WO2017222196A1
WO2017222196A1 PCT/KR2017/005370 KR2017005370W WO2017222196A1 WO 2017222196 A1 WO2017222196 A1 WO 2017222196A1 KR 2017005370 W KR2017005370 W KR 2017005370W WO 2017222196 A1 WO2017222196 A1 WO 2017222196A1
Authority
WO
WIPO (PCT)
Prior art keywords
block
cover
support
metal strip
plate
Prior art date
Application number
PCT/KR2017/005370
Other languages
French (fr)
Korean (ko)
Inventor
박선화
김철태
Original Assignee
박선화
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 박선화 filed Critical 박선화
Priority to CN201780039177.4A priority Critical patent/CN109416105B/en
Publication of WO2017222196A1 publication Critical patent/WO2017222196A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16GBELTS, CABLES, OR ROPES, PREDOMINANTLY USED FOR DRIVING PURPOSES; CHAINS; FITTINGS PREDOMINANTLY USED THEREFOR
    • F16G13/00Chains
    • F16G13/12Hauling- or hoisting-chains so called ornamental chains
    • F16G13/16Hauling- or hoisting-chains so called ornamental chains with arrangements for holding electric cables, hoses, or the like
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G11/00Arrangements of electric cables or lines between relatively-movable parts
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs

Definitions

  • the present invention relates to a cable support guide.
  • the present invention relates to a power supply, a liquid, a gas, and the like in a display equipment such as an LCD, a semiconductor chip manufacturing equipment, a machine tool, an electronic device, an industrial robot, a transport machine, etc.
  • the present invention relates to a cable support guide for stably guiding a flexible hose (hereinafter referred to as a 'cable') such as an electric wire cable for supplying or various fluid supply hoses.
  • display panel manufacturing equipment In general, display panel manufacturing equipment, semiconductor chip manufacturing equipment, machine tools, industrial robots, etc. perform repetitive operations such as picking up, transferring and processing raw materials or workpieces to mass produce or process a specific product.
  • the cable for supplying power must also be moved with the device.
  • the cable has a bent portion having a ' ⁇ ' shape and is repeatedly moved.
  • Korean Patent No. 10-1074440 such as FIG. 1 discloses a cable protection guide device for guiding a cable movement. .
  • the cable protection guide device 100 is a plurality of central tubular portion 111 for passing the cable (C) and a pair of left and right side tubular portions 112 arranged in parallel along the central tubular portion (111). ) Includes a flexible belt member 110 integrally molded.
  • each of the plurality of synthetic resin block body 121 is connected to each other repeatedly, a pair of left and right articulated support member 120 is installed in the side tubular portion 112 of the flexible belt member 110. Include.
  • the multi-joint support member 120 has a plurality of synthetic resin block bodies 121 are coupled to each other because the cable (C) being inserted and protected in the central tubular portion 111 is a linear posture and a bending posture during operation of the device To guide the movement.
  • the conventional cable protection guide device is bent by the articulated support member 120, which is also inserted into the flexible belt member 110, the various cables (C) inserted into the flexible belt member (110). I support it.
  • the articulated support member 120 is made of synthetic resin, which is weak in strength, and each block body 121 is chain-coupled by a connecting pin so that the block body is loaded by the load of the cable C. There is a problem that the 121 is broken or separated.
  • the articulated support member 120 sags not only to bring about a change in curvature, but also to fall to the side while shaking left and right with respect to the direction of travel, thereby preventing a stable movement of the cable. Is generated.
  • the present invention is to solve the above-mentioned problems, it is possible to use in a device with a relatively long moving distance of the cable does not occur sag or collapse to the side, it is excellent in strength and can be used repeatedly for a long time
  • the purpose is to provide a guide.
  • the cable support guide according to the first embodiment of the present invention includes a flexible metal strip; A support block fixed to an upper surface of each of the metal strips, the support block forming a plurality of joints as a plurality thereof are continuously disposed adjacent to each other; And a joint cover which rotatably connects two support blocks disposed adjacent to each other, and covers the joints between the two support blocks disposed adjacent to each other from above and to the side.
  • the metal strip is formed through the strip assembly holes at regular intervals along the longitudinal direction of the metal strip, the lower side of the left and right sides of the support block are provided with assembly wings extending toward the outside, respectively, the metal strip Attaching plate in close contact with the bottom of the, and through the strip assembly hole in the center of the mounting plate so as to protrude to the upper surface and the left and right both ends of the mounting plate to protrude upward from the left and right both ends of the metal strip
  • the support block further comprises a pressure fixture having a pressure blade bent upwards, the pressure block of the pressure fixture assembled to the bottom surface of the metal strip is folded inward to press the nested blades of the support block to press It is preferably fixed to a metal strip.
  • the engaging blade or the engaging hole is formed in the assembling wing, and a hook engaged with the engaging groove or the engaging hole is formed on the inner surface of the pressure wing.
  • the support block includes a block top plate and a block side plate extending bent vertically downward from the left and right edges of the block top plate, the one side of the front and rear end of the block side plate is provided with a engaging projection, the other end of the An engagement groove is formed to engage with the engagement protrusion, and the assembly wing is preferably formed extending outward from the lower end of the block side plate.
  • the joint cover may include a cover upper plate and a cover side plate extending vertically downward from left and right edges of the cover upper plate, respectively, wherein the cover upper plate covers a block upper plate connection portion of two support blocks disposed adjacent to each other. It is preferable that a cover side plate covers the block side plate junction part of a support block from a side.
  • hinge shafts are formed on both end sides of the block side plate, respectively, and coupling holes are formed on both end sides of the cover side plate, respectively, and the joint cover covers the joint portions of two adjacent support blocks at the top and the side thereof.
  • two coupling holes respectively formed at both end sides of one joint cover are fitted to hinge shafts adjacent to each other among the hinge shafts of two adjacent support blocks so that the support blocks are pivotally coupled to each other.
  • the front and rear end portions of the cover upper plate is preferably provided with an inclined support plate bent downward by a predetermined angle, respectively.
  • the apparatus may further include a reinforcement frame installed on the upper surface of the metal strip to reinforce the support block, wherein the reinforcement frame is provided on the upper surface of the metal strip, and is provided at the center of the reinforcement plate and vertically penetrated. It includes a reinforcement pillar of the shape, the upper block of the support block is formed with a fitting projection protruding downward, the locking projection protruding to the upper surface of the metal strip is fitted to the bottom of the reinforcing pillar, the lower side to the block upper plate The fitting protrusion protruding into the fitting is preferably fitted to the upper portion of the reinforcing pillar.
  • the above-described support block is composed of a block top plate and a block side plate which is bent and extended vertically downward from both left and right edges of the block top plate, and is formed in front and rear of the block side plate.
  • a body having a fitting protrusion at one of the side ends, and a fitting groove formed at the other end thereof to be engaged with the fitting protrusion; It is formed on the outside of the lower end of the left and right block side plate of the support block, horizontally extended to the outside of the lower end of the block side plate and then bent inward to be compressed to form a crimp in a form surrounding the left and right both edges of the metal strip up and down.
  • the distance between the left and right sides of the block side plate of the body is formed smaller than the width of the metal strip, it is preferable that the bottom surface of the block side plate of the body is disposed on the upper surface of the metal strip.
  • the joint cover and the cover top plate A cover side plate extending vertically downward on left and right sides of the cover upper plate, respectively; It is preferable that the cover upper plate covers the block upper plate junctions of the two support blocks disposed adjacent from above, and the cover side plate covers the block side plate junctions of the support blocks from the outside.
  • cover top plate is preferably formed by bending the front and rear end portion at an angle downward.
  • hinge holes are formed at both end sides of the left and right side block side plates of the support block, respectively; Coupling holes are formed at both end sides of the left and right cover side plates of the joint cover, respectively;
  • the joint cover is pivotally coupled to each other by a coupling pin formed through a hinge hole of the support block and a coupling hole formed in the cover side plate of the joint cover in a state of being coupled to cover the joints of two adjacent support blocks from the top and the side. It is preferable.
  • the hinge hole of the support block is configured in a circular shape corresponding to the diameter of the coupling pin
  • the coupling hole of the joint cover is preferably composed of a long hole.
  • the hinge hole of the support block is composed of a long hole
  • the coupling hole of the joint cover is preferably configured in a circular shape.
  • the lower side of the cover side plate protrudes downwardly in contact with the lower surface concave arcuate shape so that the lower surface concave in contact with the upper surface of the metal strip that is bent in an arch shape.
  • both end engaging projections of the left and right side block side plates of the support block are formed to protrude, and the respective engaging projections are pivotably fitted to the engaging holes of the joint cover.
  • a plurality of support blocks are continuously arranged to form multiple joints, and a joint cover covering the joints of adjacent support blocks supports the support block to limit excessive deformation and reinforce the support block.
  • the deflection due to the load is remarkably reduced as the deflection of the joint portion is kept below a certain curvature, so that it can be used for a long length in an automatic mechanical device with a long moving distance, and minimizes the shaking in the left and right directions as well as during operation. .
  • FIG. 1 is a perspective view showing a cable protection guide according to the prior art.
  • FIG. 2 is a perspective view showing a cable support guide according to a first embodiment of the present invention.
  • FIG 3 is an exploded view showing the cable support guide according to the first embodiment of the present invention.
  • Figure 4 is another example showing the coupling manner of the joint cover of the first embodiment of the present invention.
  • FIG. 5 is a plan view showing an assembly procedure of the cable support guide according to the first embodiment of the present invention.
  • FIG. 6 is a front sectional view showing the cable support guide according to the first embodiment of the present invention.
  • FIG. 7 is a partial operation state diagram of the cable support guide according to the first embodiment of the present invention.
  • FIG. 8 is a bent state diagram of the cable support guide according to the first embodiment of the present invention.
  • FIG. 9 is a view showing the assembly device of the cable support guide according to the first embodiment of the present invention.
  • FIG. 10 is a perspective view of a cable support guide according to a second embodiment of the present invention.
  • FIG. 11 is an exploded view of a cable support guide according to a second embodiment of the present invention.
  • FIG. 12 is a front view of the cable support guide according to the second embodiment of the present invention.
  • FIG. 13 is a side view of a cable support guide according to a second embodiment of the present invention.
  • FIG. 14 is a view illustrating a curved state of the cable support guide according to the second embodiment of the present invention.
  • coupling band 132c hinge shaft
  • the cable support guide includes a metal strip 110, a support block 130, and a joint cover 150 as one embodiment, which is another preferred embodiment.
  • the apparatus further includes a pressure fixture 120 and a reinforcement frame 140.
  • a plurality of support blocks 130 are continuously disposed on the upper surface of the metal strip 110, and joint covers 150 are fitted at upper portions of the joints between adjacent support blocks 130.
  • the support block 130 and the joint cover 150 are hinged (or combined with the rotating shaft), respectively, so that the pivot is made.
  • joints are formed at the joints of the support blocks 130 fixed on the metal strips 110, respectively, in which the joint cover 150 supports the support block 130 to limit excessive deformation while supporting the support block 130. Reinforce.
  • the pressing fixture 120 is used as a means for fixing each of the plurality of support blocks 130 on the upper surface of the metal strip 110, the inside of the support block 130 is reinforced to facilitate assembly and reinforce the strength
  • the frame 140 is installed.
  • the metal strip 110 has a relatively thin strip-shaped metal sheet to have flexibility, and has a length set to support a cable installed in a mechanical device.
  • This flexible metal strip 110 is deformed into a ' ⁇ ' shape as an example to guide the cable installed in the mechanical device. That is, elastic deformation is carried out so as to have an arc-shaped curved portion between the vertical portions parallel to each other (the direction change portion of the cable during the operation of the device).
  • the metal strip 110 preferably uses a metal material having flexibility and excellent strength and abrasion resistance.
  • a metal material having flexibility and excellent strength and abrasion resistance For example, it is preferable to use a stainless steel material.
  • a plurality of support blocks 130 are fixedly installed on the upper surface of the metal strip 110, the support block 130 may be fixed in a variety of ways, such as bolt fastening, direct welding or indirect welding using a coupling strip.
  • the present invention preferably secures the support block 130 to the metal strip 110 without using bolt fastening or welding, and for this purpose, the strip assembly hole 111 is formed through the metal strip 110.
  • the strip assembly holes 111 are formed at regular intervals along the length direction of the metal strip 110.
  • each strip assembly hole 111 is formed in the same number as the support block 130 to fix the support block 130, the pressure assembly 120 is assembled to the strip assembly hole (111).
  • the pressing fixture 120 of the present invention is attached to the mounting plate 121, the latch 122 And a pressure wing 123.
  • the attachment plate 121 is in close contact with the bottom surface of the metal strip 110, the locking hole 122 is formed in the center of the attachment plate 121 to protrude to the upper surface through the strip assembly hole 111.
  • the latch 122 has the same cross-sectional shape as the strip assembly hole (111).
  • the pressure blades 123 are integrally formed on the left and right sides of the attachment plate 121, and upward from both left and right ends of the attachment plate 121 so as to protrude upward from the left and right edges of the metal strip 110. It is bent.
  • the bent pressure wing 123 of the pressure fixture 120 assembled on the bottom surface of the metal strip 110 is bent inward, the bent pressure wing 123 overlaps the assembly wing 133 of the support block 130. The pressure is lowered so that the support block 130 is fixed to the metal strip 110.
  • the pressure fixture 120 also preferably uses a metal material excellent in strength and abrasion resistance, such as stainless steel, which is the same with the reinforcement frame 140, the support block 130, and the joint cover 150, which will be described later.
  • a metal material excellent in strength and abrasion resistance such as stainless steel
  • the reinforcement frame 140 is used incidentally to improve the convenience of assembly and the strength of the support block 130, to assist the temporary assembly between the pressure fixture 120 and the support block 130, the support block Support 130 to reinforce strength.
  • the reinforcement frame 140 includes a reinforcement plate 141 seated on the upper surface of the metal strip 110 and a reinforcement column 142 having a vertically penetrated shape and provided at the center of the reinforcement plate 141.
  • the height of the reinforcing column 142 is designed to a height that can be supported by touching the top plate of the support block 130.
  • the catch 122 of the pressing fixture 120 protruding through the strip assembly hole 111 to the top surface of the metal strip 110 is fitted to the bottom of the reinforcing column 142 ,
  • the fitting protrusion 131a protruding downward to the block upper plate 131 of the support block 130 is fitted to the upper portion of the reinforcing pillar 142 to be temporarily assembled.
  • a plurality of support blocks 130 are fixed to the upper surface of the metal strip 110, respectively, and form a multi-joint as the plurality are continuously disposed adjacent to each other.
  • a multi-joint serves to maintain a curved state with a certain curvature together with the joint cover 150.
  • a plurality of support blocks 130 are formed on the upper surface of the metal strip 110 in a state in which both ends of the lengthwise ends of the metal strip 110 are pulled out by a machine. To be placed consecutively. In use thereafter, the metal strips 110 are retracted so that the support blocks 130 engage with each other.
  • the support block 130 includes bodies 131 and 132 and assembly wings 133, and the bodies 131 and 132 are bent vertically downward from the left and right edges of the block upper plate 131 and the block upper plate 131. And a block side plate 132 extending.
  • Assembling wing 133 is formed extending from the lower left and right sides of the support block 130 toward the outside, respectively. More precisely, the assembly wing 133 extends outward from the lower end of the block side plate 132.
  • the body 131, 132 of the support block 130 has a front and rear side and the open side has a cross-section of the ' ⁇ ' shape as a whole, and two hinge shafts (132c) on the block side plate 132 on both left and right sides, respectively. Are spaced apart by a predetermined interval.
  • two hinge shafts 132c are formed on the block side plate 132 of one side, and two hinge shafts 132c are also formed on the block side plate 132 of the other side, and each block side plate 132 is formed.
  • the hinge shafts 132c formed in the are formed in parallel to positions corresponding to each other.
  • the hinge shaft 132c is, for example, a portion of the upper side is tapered to form a slope.
  • the joint cover 150 is easily fitted along the slope.
  • departure from the lower side to the upper side is prevented by the locking action.
  • the hinge shaft 132c is formed at both end sides of the block side plate 132 as an example, and the hinge shaft 132c is inserted into the coupling hole 152a formed in the joint cover 150, so that the support block 130 is supported.
  • the hinge shaft 132c is pivotally coupled to the pivot point.
  • the shaft hole 131c ' is formed in the support block 130 instead of the hinge shaft 132c
  • one of the front and rear ends of the left and right side block side plates 132 of the support block 130 is provided with a fitting protrusion 132a protruding in an arc shape, and the other fitting edge is provided at the other end.
  • Concave engagement grooves 132b that engage with 132a are formed.
  • two adjacent support blocks 130 of the plurality of support blocks 130 arranged in succession are meshed in succession.
  • the engagement protrusion 132a provided in the front part of the support block 130 following the engagement groove 132b provided in the rear part of the preceding support block 130 is engaged.
  • the fitting protrusion 131a protruding downward is formed on the block upper plate 131 of the support block 130, and the fitting protrusion 131a is a reinforcing pillar (of the reinforcing frame 140). It is inserted through the top of 142 to allow temporary assembly.
  • Assembling wing 133 is formed outside the lower end of the left and right side block side plate 132 of the support block 130.
  • the assembly wing 133 is fixed to the support block 130 to the metal strip 110 and extends in the horizontal direction and is placed on the metal strip 110.
  • the overall width of the support block 130 is equal to or slightly less than the width of the metal strip 110 so that the support block 130 is disposed above the metal strip 110. In this way, the assembly wing 133 placed on the upper surface of the metal strip 110 is coupled to the pressure wing 123 of the pressure fixture 120.
  • the pressure wing 123 of the pressure fixture 120 assembled and fixed to the bottom of the metal strip 110 extends upward through the left and right edges of the metal strip 110, the pressure wing 123 may be removed. When the sheet is bent inward, it is stacked on the assembly blades 133 of the support block 130 and pressed.
  • the present invention uses a method of bending the pressure vane 123 in a vertically upward state by a punching machine or the like in an inward direction, the support block 130 is fixed to the metal strip 110 (see FIG. 6). .
  • the welding process is time-consuming and difficult to work.
  • the assembling wing 133 has a locking groove or a locking hole 133a is formed, and the inner surface of the pressure wing 123 is hooked to the engaging groove or the locking hole 133a to engage with the hook 124. It is preferable that it is done.
  • the hook 124 of the pressure wing 123 is a locking groove of the assembly wing 133. Or it is inserted into the locking hole (133a) to enable a more robust coupling.
  • the joint cover 150 pivotally connects two adjacently disposed support blocks 130 to each other and restricts the support blocks 130 from being excessively pivoted. Cover the joints of the upper and side sides.
  • the joint cover 150 includes a cover top plate 151 and a cover side plate 152 extending vertically downward on left and right sides of the cover top plate 151, respectively, in a ' ⁇ ' shape. It is composed.
  • the cover upper plate 151 covers the upper junction of the support block 130 disposed adjacent from above. That is, each end of the block top plate 131 facing each other of two adjacent support blocks 130 is simultaneously covered from above.
  • the front and rear end portions of the cover upper plate 151 are preferably provided with the inclined support plate 151a bent downward by a predetermined angle, respectively.
  • the front and rear inclined support plates 151a press horizontally the two support blocks 130 adjacent to each other to keep the support blocks 130 arranged horizontally.
  • the support block 130 rotates inside the inclined support plate 151a and guides stable rotation. Done.
  • the cover side plate 152 of the joint cover 150 covers the block side plate 132 junction of the support block 130 from the outside, that is, each of the block side plates 132 facing each other of two adjacent support blocks 130. Cover the ends simultaneously in the side.
  • two coupling holes 152a are disposed side by side at predetermined intervals in the left and right cover side plates 152 of the joint cover 150, respectively.
  • the coupling holes 152a are formed at both end sides of the cover side plate 152, respectively.
  • the coupling hole 152a is configured in the form of a long hole. Further, if necessary, the long axis of the long hole is formed in the inclined direction to guide the turning of the support block 130.
  • the hinge axis 132c of the support block 130 has a size corresponding to the diameter of the long hole.
  • the hinge shaft 132c of the support block 130 is coupled to the coupling hole 152a of the joint cover 150 while the joint cover 150 is coupled to cover the joint portions of two adjacent support blocks 130. Fitted through.
  • two coupling holes 152a respectively formed at both end sides of one joint cover 150 are fitted to the hinge shafts 132c adjacent to each other among the hinge shafts 132c of the two adjacent support blocks 130.
  • the support block 130 is pivotally coupled to each other.
  • the hinge shaft 132c provided in the rear portion of the preceding support block 130 is fitted into the coupling hole 152a provided in the front portion of the joint cover 150, and the trailing support block 130 is The hinge shaft 132c provided at the front portion is fitted into the coupling hole 152a provided at the rear portion of the joint cover 150.
  • one joint cover 150 and two support blocks 130 disposed adjacent to each other are hinged, and as the plurality of support blocks 130 are pivotably connected to each other by repeating the combination in this manner.
  • the contact piece 153 protrudes downward from the lower portion of the cover side plate 152.
  • the contact piece 153 is curved in an arc shape with a lower surface concave.
  • the cable support guide according to the present invention when the cable support guide according to the present invention is horizontal or located in such a section (see FIG. 7A), the cable support guide is not in contact with or minimizes contact with the metal strip 110.
  • the cable support guide when the cable support guide is bent deformed (see FIG. 7B), the cable support guide is in surface contact with the metal strip 110 deformed into an arch shape to disperse the impact applied to the metal strip 110 and to the metal strip ( 110) to prevent deformation or breakage.
  • the cable support guide according to the present invention is a metal strip 110, the pressing fixture 120, the reinforcing frame 140, the support block 130 and the joint in one embodiment Assembled in the order of the cover 150.
  • a strip assembly hole 111 is formed in the metal strip 110. Therefore, as shown in FIG. 5 (b), the pressing fixture 120 is assembled at the bottom of the metal strip 110 so that the catch 122 may pass through the strip assembly hole 111.
  • the pressing blades 123 bent upward from the left and right both ends of the attachment plate 121 extends upward in the vertical direction through the left and right edges of the metal strip 110.
  • it can be coupled to the assembly wing 133 of the support block 130 overlying the metal strip 110.
  • the reinforcing frame 140 is seated on the upper surface of the metal strip 110 as shown in (c) of FIG.
  • the reinforcement plate 141 of the reinforcement frame 140 is supported on the metal strip 110, and the reinforcement pillar 142 is fitted to the catch 122 of the pressure fixture 120 protruding to the upper surface of the metal strip 110. Lose.
  • the support block 130 is seated on the upper surface of the metal strip 110 to cover each reinforcement frame 140, and the lower side of the block upper plate 131 of the support block 130.
  • the fitting protrusion 131a protruding into the upper portion of the reinforcing pillar 142 is fitted.
  • the pressing fixture 120 disposed below and the support block 130 disposed above are commonly assembled to the reinforcement frame 140. Allows the assembly of parts temporarily.
  • the pressure blade 123 of the pressure fixture 120 is bent inwardly using a punching machine or the like in the state in which the support block 130 is temporarily assembled, the pressure blade 123 is an assembly blade of the support block 130. Overlaid on (133). Therefore, fixing is completed as shown in FIG.
  • the joint cover 150 is assembled after the support block 130 is fixed to the metal strip 110.
  • the coupling hole 152a of the joint cover 150 is fitted into the hinge shaft 132c of the support block 130.
  • the lower end of the support block 130 pressurizes the metal strip 110, and the joint cover 150 covers the joints of two adjacent support blocks 130, and the edges of the front and rear inclined support plates 151a are supported by the support block.
  • the block top plate 131 of 130 is pressed.
  • the support block 130 is stably horizontally prevented from sagging downward.
  • the joint cover 150 also covers the connecting portion of the support block 130 from the side, the cable support guide including the support block 130 is prevented from swaying or bending from side to side in the entire length and falling to the side. It is also prevented.
  • the lower contact piece 153 of the joint cover 150 is spaced apart from the upper surface of the metal strip 110 by a predetermined distance to prevent damage and breakage of the metal strip 110.
  • the cable support guide is not maintained at a constant curvature and sags.
  • the cable support guide according to the present invention is supported by two cover blocks by the cover top plate 151 of the joint cover 150. The turning of 130 is limited.
  • the curved portion of the contact piece 153 provided at the lower portion of the joint cover 150 is brought into surface contact with the metal strip 110 deformed into an arch shape, thereby making local contact or The metal strip 110 is prevented from being damaged or broken by the impact.
  • FIG 8 is a view when the cable support guide according to the present invention is moved together with the cable (not shown) in a state that is bent in a ' ⁇ ' shape in the direction change position.
  • the cable support guide according to the present invention is inserted together with a cable or the like in the flexible belt member 110 as shown in FIG. 1, and supports and guides the cable while one side is bent and deformed at a constant curvature.
  • Figure 9 omitted above shows an embodiment of the device for assembling the cable support guide according to the present invention.
  • the metal strip 110 is disposed in the vertical axis direction, and the transfer strip is sequentially transferred in the vertical direction whenever the assembly is completed in the state in which the pressing fixture 120 and the reinforcing frame 140 are assembled.
  • the joint cover 150 is conveyed in the horizontal axis direction.
  • the joint cover 150 is sequentially conveyed by the horizontal conveyer T, and the joint cover 150 is sequentially conveyed in a state where it is attached to the connection lead L of the horizontal conveyer T.
  • the punching machine P descends and presses the pressure wing 123 of the pressure fixture 120 to bend inward, thereby supporting the support block 130. It is coupled with the assembly blade 133 of the).
  • the metal strip 110 is moved upward, and the next pressing fixture 120 and the reinforcing frame 140 are put in, and the subsequent joint cover 150B before the processing is moved in the right direction and again the aforementioned intersection point. And punching is done.
  • the cable support guide comprises a metal strip 10, a support block 200 and a joint cover 300.
  • the metal strip 10 is a relatively thin flexible metal strip extending in the longitudinal direction, and allows the cable support guide according to the present invention to be bent into an arch shape, and the material is not particularly limited, but the strength and abrasion resistance are not limited. In consideration it is preferred to consist of stainless steel material.
  • the support block 200 is a means for forming a multiple joint and maintaining the curved state at a specific curvature as the plurality of metal strips 10 are continuously disposed adjacent to and coupled to the metal strip 10.
  • a plurality of support blocks 200 are formed on the upper surface of the metal strip 10 in a state where both ends of the lengthwise ends of the metal strip 10 are pulled out by a machine. To be placed consecutively. In use thereafter, the metal strip 10 is contracted again so that the support blocks 200 are engaged with each other.
  • the body 210 of the support block 200 has a block upper plate 212 and a block side plate 214 extending and bent vertically downward from both left and right edges of the block upper plate 212. It is composed of a block body having a generally ' ⁇ ' shaped cross section, the front and rear and the lower side is opened.
  • the width of the block top plate 212 of the body 210 that is, the distance between the left and right both side block side plate 214 is formed smaller than the width of the metal strip 10, the block side plate of the body 210 A bottom surface is disposed on the top surface of the metal strip 10.
  • two hinge holes 214a are formed side by side at predetermined intervals in the left and right side block side plates 214 of the support block 200. More specifically, the hinge holes 214a are preferably formed at both end sides of the block side plate 214, respectively.
  • a coupling pin 324 to be described later is inserted into the hinge hole 214a, and the coupling pin 324 acts as a hinge axis so that the support block 200 is pivotally coupled around the coupling pin 324. .
  • one of the front and rear side ends of the left and right side block side plate 214 of the support block 200 is provided with a fitting protrusion 214b protruding in an arc shape, the other end is engaged with the fitting protrusion 214b.
  • a concave engagement groove 214c is formed. According to this configuration, a plurality of support blocks 200 arranged in series are continuously engaged with the adjacent support blocks 200.
  • the left and right side block side plate 214 of the support block 200 instead of the hinge hole (214a) engaging projection 214d ) Is preferably formed to protrude on the front side and the rear side, respectively.
  • the engaging projection 214d is fitted into the engaging hole 322 of the joint cover 300 to be described later, and acts as a hinge axis when the support block 200 is pivoted relative to the joint cover 300.
  • the coupling protrusion 214d is formed on the block side plate 214 of the support block 200, the coupling pin 324 is unnecessary.
  • the coupling strip 220 is formed on the outside of the lower end of the left and right side block side plate 214 of the support block 200.
  • the coupling strip 220 is for fixedly coupling the body 210 of the support block 200 to the metal strip 10, and is horizontally extended to the outside of the lower end of the block side plate 214 and then bent inward to be pressed.
  • FIG. 10 illustrates a state before the coupling strip 220 is coupled to the metal strip 10
  • FIG. 12 illustrates a state in which the coupling strip 220 is bent and compressed to be coupled to the metal strip 10.
  • the joint cover 300 pivotally connects two adjacently disposed support blocks 200 to each other, and restricts the excessively pivoting of the support blocks 200 to the two adjacently disposed support blocks 200. It is a means which covers a liver junction from upper and side sides.
  • the joint cover 300 includes a cover upper plate 310 and a cover side plate 320 extending vertically downward on left and right sides of the cover upper plate 310, respectively, and having a cross-section of ' It consists of a 'P' shape.
  • the cover top plate 310 covers the upper portion of the block top plate 212 of the two support blocks 200 adjacent to each other from above (that is, each end of the block top plate 212 facing each other of the two support blocks 200 upwards). At the same time), the front and rear ends are formed bent downward at a predetermined angle.
  • the cover side plate 320 covers the block side plate 214 junction of the support block 200 from the outside (that is, simultaneously covers each end of the block side plate 214 facing each other of the two support blocks 200 from the outside at the same time). Zoom), the block side plate 214 of the two support blocks 200 adjacent to the cover side plate 320 is coupled by a coupling pin 324.
  • the left and right both side cover side plates 320 of the joint cover 300 are arranged side by side with two coupling holes 322 spaced apart by a predetermined interval, respectively formed on both end sides of the cover side plate 320 desirable.
  • joint cover 300 is a coupling hole 322 and the support block formed in the cover side plate 320 of the joint cover 300 in a state coupled to cover the joints of two adjacent support blocks 200 from the top It is rotatably coupled to each other by a coupling pin 324 penetrating through the hinge hole 214a of the (200).
  • the coupling pin 324 may be composed of a single pin, as shown in Figure 11, the female coupling pin 324a and the male coupling pin (324b) is the left and right cover side plates of the joint cover 300 ( It may be configured in a form that is inserted through each of the coupling holes 322 of 320 and then fitted.
  • a contact piece 326 protrudes downward from the bottom of the cover side plate 320.
  • the contact piece 326 is curved in an arc shape with a lower surface concave, and as shown in FIG. 13A, when the cable support guide according to the present invention is horizontal or in such a section, the metal strip 10. Contact with or minimize contact.
  • the support block 200 is preferably configured to be movable relative to the joint cover 300 at the same time rotatable around the coupling pin 324.
  • the cable support guide according to the present invention when the cable support guide according to the present invention is horizontal, two adjacent support blocks 200 are engaged with each other, and when the cable support guide is bent, the two support blocks 200 are in opposite directions. As it moves to and spaced apart from each other it is desirable to smoothly occur the bending deformation.
  • the hinge hole 214a of the support block 200 is composed of a circular hole corresponding to the diameter of the coupling pin 324, the coupling hole 322 of the joint cover 300 is It may be configured in the form of a long hole.
  • the hinge hole 214a of the support block 200 may be configured in a long hole shape, and the coupling hole of the joint cover 300 may be configured in a circular shape.
  • the engaging projections 214b and the engaging grooves 214c of two adjacent supporting blocks 200 are engaged with each other, and the supporting blocks are engaged.
  • the bottom end of the lower end portion 200 presses the metal strip 10
  • the joint cover 300 covers the joint portion of the two support blocks 200 adjacent to each other from above, and the front and rear ends of the bending portions of the two support blocks 200 are formed.
  • the two support blocks 200 are stably leveled and prevents sagging downwards.
  • joint cover 300 also covers the joint portion of the support block 200 from the side, the entire cable support guide including the support block 200 is prevented from swaying or bending from side to side and falling from side to side.
  • the lower contact piece 326 of the joint cover 300 is spaced apart from the upper surface of the metal strip 10 to prevent damage and breakage of the metal strip 10.
  • the cable support guide is not maintained at a constant curvature and sags.
  • the cover top plate 310 of the joint cover 300 is placed by two. Since the pivot of the support block 200 is limited (when the two support blocks 200 are pivoted upward, the tip end is caught by the lower surface of the cover upper plate 310 of the joint cover 300 and no longer pivots), and thus the curvature is constant. This can be maintained, resulting in a firm cable support.
  • the concave curved portion of the bottom surface of the contact piece 326 under the joint cover 300 contacts the metal strip 10 deformed into the arch shape to make local contact. It is possible to prevent the metal strip 10 from being damaged or broken by impact or impact.
  • FIG. 14 is a side view of the cable support guide according to the present invention when moved with a cable (not shown) in an actual curved state.
  • the cable support guide according to the present invention is inserted into the flexible belt member 110 as shown in FIG. 1 together with the cable, etc., and supports and guides the cable while one side is bent and deformed at a constant curvature.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Electric Cable Arrangement Between Relatively Moving Parts (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Abstract

The present invention relates to a cable support guide comprising: a flexible metal strip; support blocks fixed to the upper surface of the metal strip, in which a plurality of support blocks are arranged and joined in a row to be adjacent to each other, thereby forming a plurality of joints; and a joint cover which connects two adjacent support blocks so as to be pivotable with respect to each other and covers a joint part between the two adjacent support blocks on the upper and lateral sides thereof.

Description

케이블 지지 가이드Cable support guide
본 발명은 케이블 지지 가이드에 관한 것으로, LCD와 같은 디스플레이 패널 제조 장비나 반도체 칩 제조 장비, 공작기계, 전자기기, 산업용 로봇, 운반기계 등 반복적으로 작동하는 기구 설비에 있어서 전원이나 액체, 기체 등을 공급하기 위한 전선 케이블 또는 각종 유체 공급 호스 등 가요성 호스(이하, '케이블'이라 통칭)를 안정적으로 안내하기 위한 케이블 지지 가이드에 관한 것이다.BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a cable support guide. The present invention relates to a power supply, a liquid, a gas, and the like in a display equipment such as an LCD, a semiconductor chip manufacturing equipment, a machine tool, an electronic device, an industrial robot, a transport machine, etc. The present invention relates to a cable support guide for stably guiding a flexible hose (hereinafter referred to as a 'cable') such as an electric wire cable for supplying or various fluid supply hoses.
일반적으로, 디스플레이 패널 제조 장비나 반도체 칩 제조 장치, 공작기계, 산업용 로봇 등은 특정 제품을 대량 생산하거나 가공할 수 있도록 원재료나 피가공물을 픽업하여 이송하고 가공 처리하는 등 반복적인 동작을 수행한다. In general, display panel manufacturing equipment, semiconductor chip manufacturing equipment, machine tools, industrial robots, etc. perform repetitive operations such as picking up, transferring and processing raw materials or workpieces to mass produce or process a specific product.
이때, 장치의 반복적인 동작을 위해서는 해당 장치에 전원이 상시 공급되어야하므로 전원을 공급하는 케이블 역시 장치와 함께 이동되어야 하는바 케이블은 통상 '⊃' 형상의 굴곡부를 가지며 반복적으로 이동된다.At this time, since the power to the device must be supplied at all times for the repetitive operation of the device, the cable for supplying power must also be moved with the device. The cable has a bent portion having a '⊃' shape and is repeatedly moved.
따라서, 케이블이 굴곡진 형태를 유지하도록 지지하고 그 이동을 안내해주는 장치가 필요하며, 도 1과 같은 한국등록특허 제10-1074440호 등에서는 케이블의 이동을 안내하는 케이블 보호안내장치를 개시하고 있다.Therefore, there is a need for a device that supports the cable to maintain a curved shape and guides its movement. Korean Patent No. 10-1074440 such as FIG. 1 discloses a cable protection guide device for guiding a cable movement. .
도시된 바와 같이, 케이블 보호안내장치(100)는 케이블(C)을 통과시키는 복수의 중앙 관형부(111) 및 상기 중앙 관형부(111)를 따라 병렬 배치된 좌우 한 쌍의 측방 관형부(112)가 일체로 성형된 가요성 벨트부재(110)를 포함한다.As shown, the cable protection guide device 100 is a plurality of central tubular portion 111 for passing the cable (C) and a pair of left and right side tubular portions 112 arranged in parallel along the central tubular portion (111). ) Includes a flexible belt member 110 integrally molded.
또한, 각각 다수의 합성수지제 블록체(121)가 반복하여 서로 연결되어 있으며, 가요성 벨트부재(110)의 측방 관형부(112) 내부에 설치되는 좌우 한 쌍의 다관절 지지부재(120)를 포함한다.In addition, each of the plurality of synthetic resin block body 121 is connected to each other repeatedly, a pair of left and right articulated support member 120 is installed in the side tubular portion 112 of the flexible belt member 110. Include.
이때, 다관절 지지부재(120)는 다수의 합성수지 블록체(121)들이 서로 체인 결합되어 있기 때문에 중앙 관형부(111)에 삽입 보호 중인 케이블(C)이 장치의 작동시 직선 자세와 굴곡 자세를 이루며 이동되도록 안내한다.At this time, the multi-joint support member 120 has a plurality of synthetic resin block bodies 121 are coupled to each other because the cable (C) being inserted and protected in the central tubular portion 111 is a linear posture and a bending posture during operation of the device To guide the movement.
따라서, 종래의 케이블 보호안내장치는 가요성 벨트부재(110) 내측에 삽입된 각종 케이블(C)을 역시 가요성 벨트부재(110)에 삽입된 다관절 지지부재(120)에 의해 굴곡진 상태로 지지한다.Therefore, the conventional cable protection guide device is bent by the articulated support member 120, which is also inserted into the flexible belt member 110, the various cables (C) inserted into the flexible belt member (110). I support it.
그러나, 종래의 케이블 보호 안내 장치는 다관절 지지부재(120)가 합성수지로 구성되어 강도가 약하고, 각 블록체(121)가 연결핀에 의해 체인결합되어 있어서 케이블(C)의 하중에 의해 블록체(121)가 파손되거나 분리되는 문제가 발생된다. However, in the conventional cable protection guide device, the articulated support member 120 is made of synthetic resin, which is weak in strength, and each block body 121 is chain-coupled by a connecting pin so that the block body is loaded by the load of the cable C. There is a problem that the 121 is broken or separated.
또한, 케이블(C)의 이동 거리가 길어지는 경우 다관절 지지부재(120)가 처지게 되어 곡률의 변화를 가져올 뿐만 아니라 진행 방향에 대해 좌우로 흔들리면서 측방으로 쓰러져 케이블의 안정적인 이동이 보장되지 못하는 문제가 발생된다.In addition, when the movement distance of the cable (C) is long, the articulated support member 120 sags not only to bring about a change in curvature, but also to fall to the side while shaking left and right with respect to the direction of travel, thereby preventing a stable movement of the cable. Is generated.
이에, 최근에는 금속 스트립의 상면에 상술한 바와 같은 블록체(121)를 일정 간격으로 설치함으로써, 금속 스트립의 탄성력으로 일정 곡률을 갖도록 케이블을 지지하는 기술도 제안되고 있다.Therefore, in recent years, a technique of supporting the cable to have a predetermined curvature by the elastic force of the metal strip has been proposed by providing the block body 121 as described above on the upper surface of the metal strip at regular intervals.
그러나, 금속 스트립을 사용하더라도 여전히 강도가 약하기 때문에 처짐 현상이나 측방으로 쓰러지는 현상이 발생하고, 이동 거리가 긴 장치에의 사용이 제한되며, 장기간 사용시 쉽게 파손되는 문제가 빈번하게 발생되고 있다.However, even when the metal strip is used, the strength is still weak, so that sagging or lateral collapse occurs, the use of a device with a long moving distance is restricted, and the problem of being easily broken when used for a long time occurs frequently.
본 발명은 전술한 문제점을 해결하기 위한 것으로, 처짐 현상이나 측방으로 쓰러지는 현상이 발생하지 않아 케이블의 이동거리가 비교적 긴 장치에서의 사용이 가능하고, 강도가 우수하여 장기간 반복적인 사용이 가능한 케이블 지지 가이드를 제공하는 것을 목적으로 한다.The present invention is to solve the above-mentioned problems, it is possible to use in a device with a relatively long moving distance of the cable does not occur sag or collapse to the side, it is excellent in strength and can be used repeatedly for a long time The purpose is to provide a guide.
이를 위해, 본 발명의 제1 실시예에 따른 케이블 지지 가이드는 가요성의 금속 스트립과; 각각 상기 금속 스트립의 상면에 고정되며, 다수개가 연속적으로 인접 배치되어 결합됨에 따라 다관절을 형성하는 지지 블럭; 및 인접 배치된 2개의 지지 블럭을 상호 선회가능하게 연결하되, 상기 인접 배치된 2개의 지지 블럭간 연접부를 상방 및 측방에서 덮는 조인트 커버를 포함하는 것을 특징으로 한다.To this end, the cable support guide according to the first embodiment of the present invention includes a flexible metal strip; A support block fixed to an upper surface of each of the metal strips, the support block forming a plurality of joints as a plurality thereof are continuously disposed adjacent to each other; And a joint cover which rotatably connects two support blocks disposed adjacent to each other, and covers the joints between the two support blocks disposed adjacent to each other from above and to the side.
이때, 상기 금속 스트립에는 상기 금속 스트립의 길이 방향을 따라 일정 간격마다 스트립 조립공이 관통 형성되어 있고, 상기 지지 블럭의 좌우 양측부 하단에는 외측을 향해 연장된 조립 날개가 각각 구비되어 있으며, 상기 금속 스트립의 저면에 밀착되는 부착판과, 상기 스트립 조립공을 관통하여 상면으로 돌출되도록 상기 부착판의 중심부에 형성된 걸림구 및 상기 금속 스트립의 좌우 양측 단부에서 상측을 향해 돌출되도록 상기 부착판의 좌우 양측 단부에서 상방으로 절곡된 가압 날개를 구비한 가압 고정구를 더 포함하여, 상기 금속 스트립의 저면에 조립된 가압 고정구의 가압 날개가 내측으로 절곡됨에 따라 상기 지지 블럭의 조립 날개 위에 포개져 가압함으로써 상기 지지 블럭이 금속 스트립에 고정된 것이 바람직하다.In this case, the metal strip is formed through the strip assembly holes at regular intervals along the longitudinal direction of the metal strip, the lower side of the left and right sides of the support block are provided with assembly wings extending toward the outside, respectively, the metal strip Attaching plate in close contact with the bottom of the, and through the strip assembly hole in the center of the mounting plate so as to protrude to the upper surface and the left and right both ends of the mounting plate to protrude upward from the left and right both ends of the metal strip The support block further comprises a pressure fixture having a pressure blade bent upwards, the pressure block of the pressure fixture assembled to the bottom surface of the metal strip is folded inward to press the nested blades of the support block to press It is preferably fixed to a metal strip.
이때, 상기 조립 날개에는 걸림홈 또는 걸림공이 형성되어 있으며, 상기 가압 날개의 내측면에는 상기 걸림홈 또는 걸림공에 끼워져 맞물리는 후크가 돌출 형성되어 있는 것이 바람직하다.At this time, it is preferable that the engaging blade or the engaging hole is formed in the assembling wing, and a hook engaged with the engaging groove or the engaging hole is formed on the inner surface of the pressure wing.
또한, 상기 지지 블럭은 블럭 상판 및 상기 블럭 상판 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성된 블럭 측판을 포함하되, 상기 블럭 측판의 전후방측 단부 중 어느 하나에는 치합 돌기가 구비되고, 나머지 단부에는 상기 치합 돌기와 치합되는 치합 홈이 형성되며, 상기 조립 날개는 상기 블럭 측판의 하단부에서 외측을 향해 연장 형성되어 있는 것이 바람직하다.In addition, the support block includes a block top plate and a block side plate extending bent vertically downward from the left and right edges of the block top plate, the one side of the front and rear end of the block side plate is provided with a engaging projection, the other end of the An engagement groove is formed to engage with the engagement protrusion, and the assembly wing is preferably formed extending outward from the lower end of the block side plate.
또한, 상기 조인트 커버는 커버 상판 및 상기 커버 상판의 좌우 양측 가장자리에서 각각 수직 하방으로 연장 형성된 커버 측판을 포함하되, 상기 커버 상판은 인접 배치된 2개의 지지 블럭의 블럭 상판 연접부를 상방에서 덮고, 상기 커버 측판은 지지 블럭의 블럭 측판 연접부를 측방에서 덮는 것이 바람직하다.The joint cover may include a cover upper plate and a cover side plate extending vertically downward from left and right edges of the cover upper plate, respectively, wherein the cover upper plate covers a block upper plate connection portion of two support blocks disposed adjacent to each other. It is preferable that a cover side plate covers the block side plate junction part of a support block from a side.
또한, 상기 블럭 측판의 양 단부측에는 각각 힌지축이 돌출 형성되어 있고, 상기 커버 측판의 양 단부측에는 각각 결합공이 형성되어 있으며, 상기 조인트 커버는 인접하는 2개의 지지 블럭의 연접부를 상부 및 측방에서 덮도록 결합시, 1개의 조인트 커버의 양 단부측에 각각 형성된 2개의 결합공이 인접한 2개의 지지 블럭의 힌지축들 중 서로 인접한 힌지축에 각각 끼워져 상기 지지 블럭이 상호 선회가능하게 결합되는 것이 바람직하다.In addition, hinge shafts are formed on both end sides of the block side plate, respectively, and coupling holes are formed on both end sides of the cover side plate, respectively, and the joint cover covers the joint portions of two adjacent support blocks at the top and the side thereof. In this case, it is preferable that two coupling holes respectively formed at both end sides of one joint cover are fitted to hinge shafts adjacent to each other among the hinge shafts of two adjacent support blocks so that the support blocks are pivotally coupled to each other.
또한, 상기 커버 상판의 전후방측 단부에는 각각 하방으로 일정 각도 절곡된 경사 지지판이 구비되어 있는 것이 바람직하다.In addition, the front and rear end portions of the cover upper plate is preferably provided with an inclined support plate bent downward by a predetermined angle, respectively.
또한, 상기 금속 스트립의 상면에 설치되어 상기 지지 블럭을 보강하는 보강 프레임을 더 포함하되, 상기 보강 프레임은 상기 금속 스트립의 상면에 안착되는 보강판과, 상기 보강판의 중심부에 구비되며 상하 관통된 형상의 보강 기둥을 포함하고, 상기 지지 블럭의 블럭 상판에는 하측으로 돌출된 끼움 돌기가 형성되어 있으며, 상기 금속 스트립의 상면으로 돌출된 걸림구는 상기 보강 기둥의 저부에 끼워지고, 상기 블럭 상판에 하측으로 돌출된 끼움 돌기는 상기 보강 기둥의 상부에 끼워져 조립되는 것이 바람직하다.The apparatus may further include a reinforcement frame installed on the upper surface of the metal strip to reinforce the support block, wherein the reinforcement frame is provided on the upper surface of the metal strip, and is provided at the center of the reinforcement plate and vertically penetrated. It includes a reinforcement pillar of the shape, the upper block of the support block is formed with a fitting projection protruding downward, the locking projection protruding to the upper surface of the metal strip is fitted to the bottom of the reinforcing pillar, the lower side to the block upper plate The fitting protrusion protruding into the fitting is preferably fitted to the upper portion of the reinforcing pillar.
한편, 본 발명의 제2 실시예에 따른 케이블 지지 가이드는 상술한 지지 블럭은 블럭 상판과, 상기 블럭 상판 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성되는 블럭 측판으로 구성되되, 상기 블럭 측판의 전후방측 단부 중 어느 하나에는 치합 돌기가 구비되고, 나머지 다른 단부에는 상기 치합 돌기와 치합되는 치합 홈이 형성된 몸체와; 상기 지지 블럭의 좌우 양측 블럭 측판의 하단부 외측에 형성되되, 블럭 측판의 하단부 외측으로 수평 연장되다가 다시 내측으로 절곡되어 압착됨에 따라 상기 금속 스트립의 좌우 양측 가장자리 부분을 상하로 둘러싸는 형태로 압착되어 지지 블럭의 몸체를 금속 스트립에 고정 결합시키는 결합띠를 포함하는 것이 바람직하다.On the other hand, in the cable support guide according to the second embodiment of the present invention, the above-described support block is composed of a block top plate and a block side plate which is bent and extended vertically downward from both left and right edges of the block top plate, and is formed in front and rear of the block side plate. A body having a fitting protrusion at one of the side ends, and a fitting groove formed at the other end thereof to be engaged with the fitting protrusion; It is formed on the outside of the lower end of the left and right block side plate of the support block, horizontally extended to the outside of the lower end of the block side plate and then bent inward to be compressed to form a crimp in a form surrounding the left and right both edges of the metal strip up and down. It is preferable to include a coupling strip for fixing the body of the block to the metal strip.
또한, 상기 몸체의 좌우 양측 블럭 측판 사이의 거리는 상기 금속 스트립의 너비보다 더 작게 형성되어, 상기 몸체의 블럭 측판 저면이 상기 금속 스트립의 상부 표면상에 배치되는 것이 바람직하다.In addition, the distance between the left and right sides of the block side plate of the body is formed smaller than the width of the metal strip, it is preferable that the bottom surface of the block side plate of the body is disposed on the upper surface of the metal strip.
또한, 상기 조인트 커버는 커버 상판과; 상기 커버 상판의 좌우 양측에 각각 수직 하방으로 연장 형성된 커버 측판을 포함하되; 상기 커버 상판은 인접 배치된 두 지지 블럭의 블럭 상판 연접부를 상방에서 덮고, 상기 커버 측판은 지지 블럭의 블럭 측판 연접부를 외측에서 덮는 것이 바람직하다.In addition, the joint cover and the cover top plate; A cover side plate extending vertically downward on left and right sides of the cover upper plate, respectively; It is preferable that the cover upper plate covers the block upper plate junctions of the two support blocks disposed adjacent from above, and the cover side plate covers the block side plate junctions of the support blocks from the outside.
또한, 상기 커버 상판은 전후방측 단부가 하방으로 일정 각도 절곡 형성된 것이 바람직하다.In addition, the cover top plate is preferably formed by bending the front and rear end portion at an angle downward.
또한, 상기 지지 블럭의 좌우 양측 블럭 측판의 양 단부측에는 각각 힌지공이 형성되고; 상기 조인트 커버의 좌우 양측 커버 측판의 양 단부측에는 각각 결합공이 형성되며; 상기 조인트 커버는 인접하는 2개의 지지 블럭의 연접부를 상부 및 측방에서 커버하도록 결합된 상태에서 조인트 커버의 커버 측판에 형성된 결합공과 지지 블럭의 힌지공을 관통하는 결합핀에 의해 상호 선회가능하게 결합되는 것이 바람직하다.In addition, hinge holes are formed at both end sides of the left and right side block side plates of the support block, respectively; Coupling holes are formed at both end sides of the left and right cover side plates of the joint cover, respectively; The joint cover is pivotally coupled to each other by a coupling pin formed through a hinge hole of the support block and a coupling hole formed in the cover side plate of the joint cover in a state of being coupled to cover the joints of two adjacent support blocks from the top and the side. It is preferable.
또한, 상기 지지 블럭의 힌지공은 결합핀의 직경에 상응하는 원형으로 구성되고, 조인트 커버의 결합공은 장공으로 구성되는 것이 바람직하다.In addition, the hinge hole of the support block is configured in a circular shape corresponding to the diameter of the coupling pin, the coupling hole of the joint cover is preferably composed of a long hole.
또한, 상기 지지 블럭의 힌지공은 장공으로 구성되고, 조인트 커버의 결합공은 원형으로 구성되는 것이 바람직하다.In addition, the hinge hole of the support block is composed of a long hole, the coupling hole of the joint cover is preferably configured in a circular shape.
또한, 상기 커버 측판의 하부에는 아치 형상으로 굴곡지게 변형되는 금속 스트립의 상부 표면과 면 접촉되도록 하부면이 오목하게 원호형상으로 만곡된 접촉편이 하방으로 돌출 형성된 것이 바람직하다.In addition, it is preferable that the lower side of the cover side plate protrudes downwardly in contact with the lower surface concave arcuate shape so that the lower surface concave in contact with the upper surface of the metal strip that is bent in an arch shape.
또한, 상기 지지 블럭의 좌우 양측 블럭 측판의 양단 결합돌기가 각각 돌출 형성되고, 상기 각 결합돌기는 상기 조인트 커버의 결합공에 선회가능하게 끼움 결합되는 것이 바람직하다.In addition, it is preferable that both end engaging projections of the left and right side block side plates of the support block are formed to protrude, and the respective engaging projections are pivotably fitted to the engaging holes of the joint cover.
이상과 같은 본 발명은 다수개의 지지 블럭이 연속적으로 배치되어 다관절을 형성하되, 인접한 지지 블럭들의 연접부를 덮는 조인트 커버가 지지 블럭을 지탱하여 과도한 변형을 제한하고 지지 블럭을 보강한다.In the present invention as described above, a plurality of support blocks are continuously arranged to form multiple joints, and a joint cover covering the joints of adjacent support blocks supports the support block to limit excessive deformation and reinforce the support block.
따라서, 관절부의 변형이 일정 곡률이 이하로 유지됨에 따라 하중에 의한 처짐 현상이 현저하게 감소되므로 이동 거리가 긴 자동 기계 장치 등에서 긴 길이로 사용 가능하며, 작동 중 상하는 물론 좌우 방향의 흔들림을 최소화한다.Therefore, the deflection due to the load is remarkably reduced as the deflection of the joint portion is kept below a certain curvature, so that it can be used for a long length in an automatic mechanical device with a long moving distance, and minimizes the shaking in the left and right directions as well as during operation. .
도 1은 종래기술에 따른 케이블 보호 안내장치를 나타낸 사시도이다.1 is a perspective view showing a cable protection guide according to the prior art.
도 2는 본 발명의 제1 실시예에 따른 케이블 지지 가이드를 나타낸 사시도이다.2 is a perspective view showing a cable support guide according to a first embodiment of the present invention.
도 3은 본 발명의 제1 실시예에 따른 케이블 지지 가이드를 나타낸 분해도이다.3 is an exploded view showing the cable support guide according to the first embodiment of the present invention.
도 4는 본 발명의 제1 실시예조인트 커버의 결합 방식을 나타낸 다른 예이다.Figure 4 is another example showing the coupling manner of the joint cover of the first embodiment of the present invention.
도 5는 본 발명의 제1 실시예에 따른 케이블 지지 가이드의 조립 순서를 나타낸 평면도이다.5 is a plan view showing an assembly procedure of the cable support guide according to the first embodiment of the present invention.
도 6은 본 발명의 제1 실시예에 따른 케이블 지지 가이드를 나타낸 정단면도이다.6 is a front sectional view showing the cable support guide according to the first embodiment of the present invention.
도 7은 본 발명의 제1 실시예에 따른 케이블 지지 가이드의 부분 동작 상태도이다.7 is a partial operation state diagram of the cable support guide according to the first embodiment of the present invention.
도 8은 본 발명의 제1 실시예에 따른 케이블 지지 가이드의 굴곡진 상태도이다.8 is a bent state diagram of the cable support guide according to the first embodiment of the present invention.
도 9는 본 발명의 제1 실시예에 따른 케이블 지지 가이드의 조립 장치를 나타낸 도이다.9 is a view showing the assembly device of the cable support guide according to the first embodiment of the present invention.
도 10은 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 사시도이다.10 is a perspective view of a cable support guide according to a second embodiment of the present invention.
도 11은 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 분해도이다.11 is an exploded view of a cable support guide according to a second embodiment of the present invention.
도 12는 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 정면도이다.12 is a front view of the cable support guide according to the second embodiment of the present invention.
도 13은 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 측면도이다.13 is a side view of a cable support guide according to a second embodiment of the present invention.
도 14는 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 굴곡진 상태의 모습이 도시된 도면이다.FIG. 14 is a view illustrating a curved state of the cable support guide according to the second embodiment of the present invention. FIG.
<부호의 설명><Description of the code>
10, 110 : 금속 스트립 111: 스트립 조립공10, 110: metal strip 111: strip assembly
120: 가압 고정구 122: 걸림구120: pressurizing fixture 122: locking mouth
123: 가압 날개 124: 후크123: pressure wing 124: hook
130, 200: 지지 블럭 131, 212: 블럭 상판130, 200: support blocks 131, 212: block top plate
132, 224: 블럭 측판 133: 조립 날개132, 224 block side plate 133: assembly wing
220: 결합띠 132c: 힌지축220: coupling band 132c: hinge shaft
140: 보강 프레임 214a: 힌지공140: reinforcing frame 214a: hinge hole
141: 보강판 142: 보강 기둥141: reinforcement plate 142: reinforcement column
150, 300: 조인트 커버 151, 310: 커버 상판150, 300: joint cover 151, 310: cover top plate
152, 320: 커버 측판 151a: 경사 지지판152, 320: cover side plate 151a: inclined support plate
152a, 322: 결합공 153, 326: 접촉편152a, 322: coupling holes 153, 326: contact piece
이하, 첨부된 도면을 참조하여 본 발명의 바람직한 실시예에 따른 케이블 지지 가이드에 대해 상세히 설명한다.Hereinafter, a cable support guide according to a preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.
도 2에 도시된 바와 같이, 본 발명의 제1 실시예에 따른 케이블 지지 가이드는 일 실시예로써 금속 스트립(110)과, 지지 블럭(130) 및 조인트 커버(150)를 포함하며, 바람직한 다른 실시예로써 가압 고정구(120) 및 보강 프레임(140)을 더 포함한다.As shown in FIG. 2, the cable support guide according to the first embodiment of the present invention includes a metal strip 110, a support block 130, and a joint cover 150 as one embodiment, which is another preferred embodiment. As an example, the apparatus further includes a pressure fixture 120 and a reinforcement frame 140.
이러한 구성에서 금속 스트립(110)의 상면에 다수개의 지지 블럭(130)이 연속 배치되고, 인접한 지지 블럭(130) 간의 연접부에는 각각 조인트 커버(150)가 상부에서 끼워진다. 지지 블럭(130)과 조인트 커버(150)는 각각 힌지 결합(혹은 회전축 결합)되어 선회가 이루어지게 한다.In this configuration, a plurality of support blocks 130 are continuously disposed on the upper surface of the metal strip 110, and joint covers 150 are fitted at upper portions of the joints between adjacent support blocks 130. The support block 130 and the joint cover 150 are hinged (or combined with the rotating shaft), respectively, so that the pivot is made.
따라서, 금속 스트립(110) 위에 각각 고정된 지지 블럭(130)들의 연접부마다 관절부가 형성되고, 이때 조인트 커버(150)가 지지 블럭(130)을 지탱하여 과도한 변형을 제한하면서도 지지 블럭(130)을 보강한다.Therefore, joints are formed at the joints of the support blocks 130 fixed on the metal strips 110, respectively, in which the joint cover 150 supports the support block 130 to limit excessive deformation while supporting the support block 130. Reinforce.
나아가, 금속 스트립(110)의 상면에 다수개의 지지 블럭(130)을 각각 고정하는 수단으로써 가압 고정구(120)가 사용되며, 지지 블럭(130)의 내측에는 조립을 용이하게 하고 강도를 보강하도록 보강 프레임(140)이 설치된다.In addition, the pressing fixture 120 is used as a means for fixing each of the plurality of support blocks 130 on the upper surface of the metal strip 110, the inside of the support block 130 is reinforced to facilitate assembly and reinforce the strength The frame 140 is installed.
이를 위해, 도 3과 같이 금속 스트립(110)은 가요성(flexibility)을 가지도록 비교적 두께가 얇은 띠 형상의 금속 박판이 사용되며, 기계 장치에 설치된 케이블을 지지할 수 있도록 설정된 길이를 갖는다.To this end, as shown in FIG. 3, the metal strip 110 has a relatively thin strip-shaped metal sheet to have flexibility, and has a length set to support a cable installed in a mechanical device.
이러한 가요성의 금속 스트립(110)은 기계 장치에 설치된 케이블을 안내하도록 일 예로 '⊃' 형상으로 변형된다. 즉, 상하 평행한 직선부 사이(장치 동작시 케이블의 방향 전환부분)에 아치 형상의 곡선부를 갖도록 탄성 변형된다.This flexible metal strip 110 is deformed into a '⊃' shape as an example to guide the cable installed in the mechanical device. That is, elastic deformation is carried out so as to have an arc-shaped curved portion between the vertical portions parallel to each other (the direction change portion of the cable during the operation of the device).
금속 스트립(110)은 가요성을 가지면서도 강도와 내마모성이 뛰어난 금속 재질을 사용하는 것이 바람직하며, 그 예로 스테인레스 스틸 재질을 사용하는 것이 바람직하다.The metal strip 110 preferably uses a metal material having flexibility and excellent strength and abrasion resistance. For example, it is preferable to use a stainless steel material.
한편, 금속 스트립(110)의 상면에는 다수개의 지지 블럭(130)이 각각 고정 설치되는데, 지지 블럭(130)은 볼트 체결이나 직접 용접 혹은 결합 띠를 이용한 간접 용접 등 다양한 방식으로 고정될 수 있다.On the other hand, a plurality of support blocks 130 are fixedly installed on the upper surface of the metal strip 110, the support block 130 may be fixed in a variety of ways, such as bolt fastening, direct welding or indirect welding using a coupling strip.
그러나 본 발명은 바람직하게 볼트 체결이나 용접 방식을 사용하지 않고도 지지 블럭(130)을 금속 스트립(110)에 고정하며, 이를 위해 금속 스트립(110)에 스트립 조립공(111)을 관통 형성한다.However, the present invention preferably secures the support block 130 to the metal strip 110 without using bolt fastening or welding, and for this purpose, the strip assembly hole 111 is formed through the metal strip 110.
스트립 조립공(111)은 금속 스트립(110)의 길이 방향을 따라 일정 간격마다 형성된다. 또한, 각각의 스트립 조립공(111)마다 지지 블럭(130)을 고정하도록 지지 블럭(130)과 동일한 개수로 형성되며, 스트립 조립공(111)에는 가압 고정구(120)가 조립된다.The strip assembly holes 111 are formed at regular intervals along the length direction of the metal strip 110. In addition, each strip assembly hole 111 is formed in the same number as the support block 130 to fix the support block 130, the pressure assembly 120 is assembled to the strip assembly hole (111).
상술한 바와 같이 지지 블럭(130)을 금속 스트립(110)의 상면에 고정하기 위한 고정 수단의 일 실시예로써, 본 발명의 가압 고정구(120)는 부착판(121)과, 걸림구(122) 및 가압 날개(123)를 포함한다. As an embodiment of the fixing means for fixing the support block 130 to the upper surface of the metal strip 110 as described above, the pressing fixture 120 of the present invention is attached to the mounting plate 121, the latch 122 And a pressure wing 123.
이때, 부착판(121)은 금속 스트립(110)의 저면에 밀착되고, 걸림구(122)는 스트립 조립공(111)을 관통하여 상면으로 돌출되도록 부착판(121)의 중심부에 형성된다. 바람직하게 걸림구(122)는 스트립 조립공(111)과 동일한 단면 형상을 갖는다.At this time, the attachment plate 121 is in close contact with the bottom surface of the metal strip 110, the locking hole 122 is formed in the center of the attachment plate 121 to protrude to the upper surface through the strip assembly hole 111. Preferably, the latch 122 has the same cross-sectional shape as the strip assembly hole (111).
또한, 가압 날개(123)는 부착판(121)의 좌우측에 일체로 형성되는 것으로, 금속 스트립(110)의 좌우 양측 가장자리에서 상측을 향해 돌출될 수 있도록 부착판(121)의 좌우 양측 단부에서 상방으로 절곡되어 있다.In addition, the pressure blades 123 are integrally formed on the left and right sides of the attachment plate 121, and upward from both left and right ends of the attachment plate 121 so as to protrude upward from the left and right edges of the metal strip 110. It is bent.
따라서, 금속 스트립(110)의 저면에 조립된 가압 고정구(120)의 가압 날개(123)를 내측으로 절곡시키면, 절곡된 가압 날개(123)가 지지 블럭(130)의 조립 날개(133) 위에 포개져 가압함으로써 지지 블럭(130)이 금속 스트립(110)에 고정되게 한다.Accordingly, when the pressure wing 123 of the pressure fixture 120 assembled on the bottom surface of the metal strip 110 is bent inward, the bent pressure wing 123 overlaps the assembly wing 133 of the support block 130. The pressure is lowered so that the support block 130 is fixed to the metal strip 110.
가압 고정구(120) 역시 스테인레스 스틸과 같이 강도와 내마모성이 뛰어난 금속 재질을 사용하는 것이 바람직하며, 이는 후술할 보강 프레임(140), 지지 블럭(130) 및 조인트 커버(150) 역시 마찬가지이다.The pressure fixture 120 also preferably uses a metal material excellent in strength and abrasion resistance, such as stainless steel, which is the same with the reinforcement frame 140, the support block 130, and the joint cover 150, which will be described later.
다음, 보강 프레임(140)은 조립의 편리성 및 지지 블럭(130)의 강도를 향상시키기 위해 부수적으로 사용되는 것으로, 가압 고정구(120)와 지지 블럭(130) 간의 임시 조립을 보조하고, 지지 블럭(130)을 지지하여 강도를 보강한다.Next, the reinforcement frame 140 is used incidentally to improve the convenience of assembly and the strength of the support block 130, to assist the temporary assembly between the pressure fixture 120 and the support block 130, the support block Support 130 to reinforce strength.
이를 위해 보강 프레임(140)은 금속 스트립(110)의 상면에 안착되는 보강판(141) 및 상기 보강판(141)의 중심부에 구비되며 상하 관통된 형상의 보강 기둥(142)을 포함한다. 바람직하게 보강 기둥(142)의 높이는 지지 블럭(130)의 상판에 닿아 지지할 수 있는 높이로 설계된다.To this end, the reinforcement frame 140 includes a reinforcement plate 141 seated on the upper surface of the metal strip 110 and a reinforcement column 142 having a vertically penetrated shape and provided at the center of the reinforcement plate 141. Preferably, the height of the reinforcing column 142 is designed to a height that can be supported by touching the top plate of the support block 130.
따라서, 아래에서 다시 설명하는 바와 같이, 스트립 조립공(111)을 통과하여 금속 스트립(110)의 상면으로 돌출된 가압 고정구(120)의 걸림구(122)는 보강 기둥(142)의 저부에 끼워지고, 지지 블럭(130)의 블럭 상판(131)에 하측으로 돌출된 끼움 돌기(131a)는 보강 기둥(142)의 상부에 끼워져 임시 조립이 이루어진다.Thus, as will be described again below, the catch 122 of the pressing fixture 120 protruding through the strip assembly hole 111 to the top surface of the metal strip 110 is fitted to the bottom of the reinforcing column 142 , The fitting protrusion 131a protruding downward to the block upper plate 131 of the support block 130 is fitted to the upper portion of the reinforcing pillar 142 to be temporarily assembled.
지지 블럭(130)은 다수개가 금속 스트립(110)의 상면에 각각 고정되며, 다수개가 연속적으로 인접 배치되어 결합됨에 따라 다관절을 형성한다. 또한 다관절을 형성하면서도 조인트 커버(150)과 함께 특정 곡률로 굴곡진 상태를 유지시키는 역할을 한다.A plurality of support blocks 130 are fixed to the upper surface of the metal strip 110, respectively, and form a multi-joint as the plurality are continuously disposed adjacent to each other. In addition, while forming a multi-joint serves to maintain a curved state with a certain curvature together with the joint cover 150.
지지 블럭(130)을 금속 스트립(110)에 설치시, 일 예로 금속 스트립(110)의 길이 방향 양단부를 기계로 잡아당겨 인장시킨 상태에서 다수개의 지지 블럭(130)을 금속 스트립(110)의 상면에 연속 배치한다. 그 후 사용시에는 금속 스트립(110)이 다시 수축되므로 지지 블럭(130)들이 서로 치합된다.When the support block 130 is installed on the metal strip 110, for example, a plurality of support blocks 130 are formed on the upper surface of the metal strip 110 in a state in which both ends of the lengthwise ends of the metal strip 110 are pulled out by a machine. To be placed consecutively. In use thereafter, the metal strips 110 are retracted so that the support blocks 130 engage with each other.
지지 블럭(130)은 몸체(131, 132) 및 조립 날개(133)를 포함하며, 몸체(131, 132)는 블럭 상판(131) 및 상기 블럭 상판(131) 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성되는 블럭 측판(132)을 포함한다.The support block 130 includes bodies 131 and 132 and assembly wings 133, and the bodies 131 and 132 are bent vertically downward from the left and right edges of the block upper plate 131 and the block upper plate 131. And a block side plate 132 extending.
조립 날개(133)는 지지 블럭(130)의 좌우 양측부 하단에서 각각 외측을 향해 연장 형성된다. 더욱 정확히 조립 날개(133)는 블럭 측판(132)의 하단부에서 외측을 향해 연장 형성되어 있다.Assembling wing 133 is formed extending from the lower left and right sides of the support block 130 toward the outside, respectively. More precisely, the assembly wing 133 extends outward from the lower end of the block side plate 132.
여기서, 지지 블럭(130)의 몸체(131, 132)는 전후방측 및 하방측이 개구되어 전체적으로 'П' 자 형상의 단면을 가지며, 좌우 양측의 블럭 측판(132)에는 각각 2개의 힌지축(132c)이 소정 간격 이격되어 나란히 형성된다.Here, the body 131, 132 of the support block 130 has a front and rear side and the open side has a cross-section of the 'П' shape as a whole, and two hinge shafts (132c) on the block side plate 132 on both left and right sides, respectively. Are spaced apart by a predetermined interval.
즉, 일측부의 블럭 측판(132)에 2개의 힌지축(132c)이 형성되고, 타측부의 블럭 측판(132)에도 역시 2개의 힌지축(132c)이 형성되며, 각각의 블럭 측판(132)에 형성된 힌지축(132c)은 서로 대응한 위치에 평행하게 형성되어 있다.That is, two hinge shafts 132c are formed on the block side plate 132 of one side, and two hinge shafts 132c are also formed on the block side plate 132 of the other side, and each block side plate 132 is formed. The hinge shafts 132c formed in the are formed in parallel to positions corresponding to each other.
이러한 힌지축(132c)은 일 예로 상측 일부가 테이퍼지게 깍아져 있어서 슬로프를 형성한다. 따라서, 조인트 커버(150)를 상부에서 끼울 때 조인트 커버(150)가 슬로프를 따라 쉽게 끼워진다. 반면, 하측에서 상부로의 이탈은 걸림 작용에 의해 방지된다.The hinge shaft 132c is, for example, a portion of the upper side is tapered to form a slope. Thus, when fitting the joint cover 150 from the top, the joint cover 150 is easily fitted along the slope. On the other hand, departure from the lower side to the upper side is prevented by the locking action.
또한, 힌지축(132c)은 일 예로 블럭 측판(132)의 양 단부측에 각각 형성되며, 힌지축(132c)은 조인트 커버(150)에 형성된 결합공(152a)이 끼워지므로 지지 블럭(130)이 힌지축(132c)을 회동점으로 하여 선회가능하게 결합된다.In addition, the hinge shaft 132c is formed at both end sides of the block side plate 132 as an example, and the hinge shaft 132c is inserted into the coupling hole 152a formed in the joint cover 150, so that the support block 130 is supported. The hinge shaft 132c is pivotally coupled to the pivot point.
다만, 도 4에 다른 실시예로써 도시한 바와 같이, 지지 블럭(130)에 힌지축(132c) 대신 축공(131c')을 관통 형성시킨 경우에는, 지지 블럭(130)의 축공(131c')과 조인트 커버(150)의 결합공(152a)을 일치시킨 상태에서 결합핀(P1, P2)을 끼워 선회 가능하게 결합시킬 수도 있음은 자명하다.However, as shown in FIG. 4 as another embodiment, when the shaft hole 131c 'is formed in the support block 130 instead of the hinge shaft 132c, the shaft hole 131c' of the support block 130 and Obviously, the coupling pins 152a of the joint cover 150 may be fitted to be pivotally coupled by fitting the coupling pins P1 and P2.
그러나, 결합핀(P1, P2)을 사용하는 경우에는 축공(131c')과 결합공(152a)을 일치시키는 공정과, 한 쌍의 결합핀(P1, P2)을 별도로 조립하는 공정 및 결합핀(P1, P2)의 사용에 따른 부품 비용의 증가가 발생하므로 도 3과 같이 힌지축(132c)을 사용하는 것이 바람직하다.However, in the case of using the coupling pins P1 and P2, the process of matching the shaft hole 131c 'and the coupling hole 152a, the process of assembling a pair of coupling pins P1 and P2 separately, and the coupling pin ( Since an increase in component cost occurs due to the use of P1 and P2, it is preferable to use the hinge shaft 132c as shown in FIG. 3.
한편, 도 3으로 다시 돌아가, 지지 블럭(130)의 좌우 양측 블럭 측판(132)의 전후방측 단부 중 어느 하나에는 원호 형상으로 돌출 형성된 치합 돌기(132a)가 구비되고, 나머지 다른 단부에는 상기 치합 돌기(132a)와 치합되는 오목한 치합 홈(132b)이 형성되어 있다.Meanwhile, back to FIG. 3, one of the front and rear ends of the left and right side block side plates 132 of the support block 130 is provided with a fitting protrusion 132a protruding in an arc shape, and the other fitting edge is provided at the other end. Concave engagement grooves 132b that engage with 132a are formed.
이러한 구성에 따라, 연속적으로 배치되는 다수개의 지지 블럭(130) 중 인접한 2개의 지지 블럭(130)이 연속적으로 치합된다. 예컨대, 선행하는 지지 블럭(130)의 후방부에 구비된 치합 홈(132b)에 후행하는 지지 블럭(130)의 전방부에 구비된 치합 돌기(132a)가 치합된다.According to this configuration, two adjacent support blocks 130 of the plurality of support blocks 130 arranged in succession are meshed in succession. For example, the engagement protrusion 132a provided in the front part of the support block 130 following the engagement groove 132b provided in the rear part of the preceding support block 130 is engaged.
다만, 지지 블럭(130)의 블럭 상판(131)에는 하측으로 돌출된 끼움 돌기(131a)가 형성되어 있는 것이 바람직한데, 끼움 돌기(131a)는 후술하는 바와 같이 보강 프레임(140)의 보강 기둥(142)의 상부를 통해 삽입되어 임시 조립을 가능하게 한다.However, it is preferable that the fitting protrusion 131a protruding downward is formed on the block upper plate 131 of the support block 130, and the fitting protrusion 131a is a reinforcing pillar (of the reinforcing frame 140). It is inserted through the top of 142 to allow temporary assembly.
조립 날개(133)는 지지 블럭(130)의 좌우 양측 블럭 측판(132)의 하단부 외측에는 형성된다. 조립 날개(133)는 지지 블럭(130)을 금속 스트립(110)에 고정 결합시키기 위한 것으로 수평 방향으로 연장되어 금속 스트립(110) 위에 놓인다.Assembling wing 133 is formed outside the lower end of the left and right side block side plate 132 of the support block 130. The assembly wing 133 is fixed to the support block 130 to the metal strip 110 and extends in the horizontal direction and is placed on the metal strip 110.
몸체(131, 132) 및 조립 날개(133)를 포함한 지지 블럭(130)의 전체 폭은 금속 스트립(110)의 폭과 같거나 다소 작아서 지지 블럭(130)가 금속 스트립(110) 위에 배치된다. 이와 같이 금속 스트립(110) 상면에 놓인 조립 날개(133)는 가압 고정구(120)의 가압 날개(123)와 결합된다.The overall width of the support block 130, including the bodies 131, 132 and the assembly vanes 133, is equal to or slightly less than the width of the metal strip 110 so that the support block 130 is disposed above the metal strip 110. In this way, the assembly wing 133 placed on the upper surface of the metal strip 110 is coupled to the pressure wing 123 of the pressure fixture 120.
구체적으로, 금속 스트립(110)의 저면에 조립 고정된 가압 고정구(120)의 가압 날개(123)는 금속 스트립(110)의 좌우측 가장자리를 통해 상방으로 연장된 상태이므로, 이러한 가압 날개(123)를 내측으로 절곡시키면 지지 블럭(130)의 조립 날개(133) 위에 포개져 가압하게 된다.Specifically, since the pressure wing 123 of the pressure fixture 120 assembled and fixed to the bottom of the metal strip 110 extends upward through the left and right edges of the metal strip 110, the pressure wing 123 may be removed. When the sheet is bent inward, it is stacked on the assembly blades 133 of the support block 130 and pressed.
이와 같이 본 발명은 펀칭 기계 등으로 수직 상향된 상태의 가압 날개(123)를 내측 방향으로 가압하여 절곡시키는 방식을 사용하므로 지지 블럭(130)을 금속 스트립(110)에 고정(도 6 참조)시킨다. 따라서, 시간이 오래 걸리고 작업이 어려운 용접 공정을 사용하지 않게 된다.As described above, since the present invention uses a method of bending the pressure vane 123 in a vertically upward state by a punching machine or the like in an inward direction, the support block 130 is fixed to the metal strip 110 (see FIG. 6). . Thus, the welding process is time-consuming and difficult to work.
다만, 조립 날개(133)에는 걸림홈 또는 걸림공(133a)이 형성되어 있고, 가압 날개(123)의 내측면에는 상기 걸림홈 또는 걸림공(133a)에 끼워져 맞물리는 후크(124)가 돌출 형성되어 있는 것이 바람직하다.However, the assembling wing 133 has a locking groove or a locking hole 133a is formed, and the inner surface of the pressure wing 123 is hooked to the engaging groove or the locking hole 133a to engage with the hook 124. It is preferable that it is done.
이를 통해 지지 블럭(130)의 조립 날개(133) 위에 가압 고정구(120)의 가압 날개(123)를 포개어 가압 고정시, 가압 날개(123)의 후크(124)가 조립 날개(133)의 걸림홈 또는 걸림공(133a)에 끼워더 더욱 견고한 결합을 가능하게 한다.When the pressure wing 123 of the pressing fixture 120 is overlaid and fixed on the assembly wing 133 of the support block 130, the hook 124 of the pressure wing 123 is a locking groove of the assembly wing 133. Or it is inserted into the locking hole (133a) to enable a more robust coupling.
한편, 조인트 커버(150)는 인접 배치된 2개의 지지 블럭(130)을 상호 선회가능하게 연결하고, 지지 블럭(130)이 과도하게 선회되는 것을 제한하기 위하여 인접 배치된 2개의 지지 블럭(130)의 연접부를 상방 및 측방에서 덮는다.Meanwhile, the joint cover 150 pivotally connects two adjacently disposed support blocks 130 to each other and restricts the support blocks 130 from being excessively pivoted. Cover the joints of the upper and side sides.
도시된 바와 같이, 조인트 커버(150)는 커버 상판(151) 및 상기 커버 상판(151)의 좌우 양측에 각각 수직 하방으로 연장 형성된 커버 측판(152)을 포함하여 단면이 대체로 'П' 자 형상으로 구성된다. As shown, the joint cover 150 includes a cover top plate 151 and a cover side plate 152 extending vertically downward on left and right sides of the cover top plate 151, respectively, in a 'П' shape. It is composed.
이러한 커버 상판(151)은 인접 배치된 지지 블럭(130)의 상측 연접부를 상방에서 덮는다. 즉, 인접한 2개의 지지 블럭(130)의 서로 마주보는 블럭 상판(131)의 각 단부를 상방에서 동시에 덮는다. The cover upper plate 151 covers the upper junction of the support block 130 disposed adjacent from above. That is, each end of the block top plate 131 facing each other of two adjacent support blocks 130 is simultaneously covered from above.
다만, 커버 상판(151)의 전후방측 단부에는 각각 하방으로 일정 각도 절곡된 경사 지지판(151a)이 구비되는 것이 바람직하다. 전후방측 경사 지지판(151a)은 각각 연단부가 인접한 2개의 지지 블럭(130)을 눌러 연속 배치된 지지 블럭(130)들의 수평을 유지시킨다.However, the front and rear end portions of the cover upper plate 151 are preferably provided with the inclined support plate 151a bent downward by a predetermined angle, respectively. The front and rear inclined support plates 151a press horizontally the two support blocks 130 adjacent to each other to keep the support blocks 130 arranged horizontally.
반면, 연속 배치된 지지 블럭(130)들이 금속 스트립(110)과 함께 특정한 곡률로 선회하는 경우에는 경사 지지판(151a)의 내측에 지지 블럭(130)이 회동하는 공간을 제공함과 동시에 안정적인 회동을 안내하게 된다.On the other hand, when the continuously arranged support blocks 130 pivot with a metal curvature 110 at a specific curvature, the support block 130 rotates inside the inclined support plate 151a and guides stable rotation. Done.
조인트 커버(150)의 커버 측판(152)은 지지 블럭(130)의 블럭 측판(132) 연접부를 외측에서 덮는다, 즉, 인접한 2개의 지지 블럭(130)의 서로 마주보는 블럭 측판(132)의 각 단부를 측장에서 동시에 덮는다. The cover side plate 152 of the joint cover 150 covers the block side plate 132 junction of the support block 130 from the outside, that is, each of the block side plates 132 facing each other of two adjacent support blocks 130. Cover the ends simultaneously in the side.
이때, 조인트 커버(150)의 좌우 양측 커버 측판(152)에는 각각 2개의 결합공(152a)이 소정 간격 이격되어 나란히 배치된다. 일 예로 결합공(152a)은 커버 측판(152)의 양 단부측에 각각 형성된다.In this case, two coupling holes 152a are disposed side by side at predetermined intervals in the left and right cover side plates 152 of the joint cover 150, respectively. For example, the coupling holes 152a are formed at both end sides of the cover side plate 152, respectively.
이러한 결합공(152a)은 장공 형태로 구성된다. 나아가 필요에 따라서는 장공의 장축을 경사진 방향이 되도록 형성함으로써 지지 블럭(130)의 선회를 안내한다. 지지 블럭(130)의 힌지축(132c)은 장공의 직경에 상응하는 크기를 갖는다.The coupling hole 152a is configured in the form of a long hole. Further, if necessary, the long axis of the long hole is formed in the inclined direction to guide the turning of the support block 130. The hinge axis 132c of the support block 130 has a size corresponding to the diameter of the long hole.
따라서, 조인트 커버(150)가 인접하는 2개의 지지 블럭(130)의 연접부를 덮도록 결합된 상태에서 지지 블럭(130)의 힌지축(132c)이 조인트 커버(150)의 결합공(152a)을 관통하도록 끼워진다.Accordingly, the hinge shaft 132c of the support block 130 is coupled to the coupling hole 152a of the joint cover 150 while the joint cover 150 is coupled to cover the joint portions of two adjacent support blocks 130. Fitted through.
즉, 1개의 조인트 커버(150)의 양 단부측에 각각 형성된 2개의 결합공(152a)이 인접한 2개의 지지 블럭(130)의 힌지축(132c)들 중 서로 인접한 힌지축(132c)에 각각 끼워져 상기 지지 블럭(130)이 상호 선회가능하게 결합된다.That is, two coupling holes 152a respectively formed at both end sides of one joint cover 150 are fitted to the hinge shafts 132c adjacent to each other among the hinge shafts 132c of the two adjacent support blocks 130. The support block 130 is pivotally coupled to each other.
일 예로, 선행하는 지지 블럭(130)의 후방부에 구비된 힌지축(132c)은 조인트 커버(150)의 전방부에 구비된 결합공(152a)에 끼워지고, 후행하는 지지 블럭(130)의 전방부에 구비된 힌지축(132c)은 조인트 커버(150)의 후방부에 구비된 결합공(152a)에 끼워진다.For example, the hinge shaft 132c provided in the rear portion of the preceding support block 130 is fitted into the coupling hole 152a provided in the front portion of the joint cover 150, and the trailing support block 130 is The hinge shaft 132c provided at the front portion is fitted into the coupling hole 152a provided at the rear portion of the joint cover 150.
따라서, 1개의 조인트 커버(150)와 인접 배치된 2개의 지지 블럭(130)이 각각 힌지 결합되고, 이러한 방식의 결합을 반복함에 따라 다수개의 지지 블럭(130)이 서로 선회 가능하게 연속 결합된다.Accordingly, one joint cover 150 and two support blocks 130 disposed adjacent to each other are hinged, and as the plurality of support blocks 130 are pivotably connected to each other by repeating the combination in this manner.
다만, 커버 측판(152)의 하부에는 접촉편(153)이 하방으로 돌출 형성되어 있는 것이 바람직하다. 일 예로 접촉편(153)은 하부면이 오목하게 원호형상으로 만곡되어 있다.However, it is preferable that the contact piece 153 protrudes downward from the lower portion of the cover side plate 152. For example, the contact piece 153 is curved in an arc shape with a lower surface concave.
따라서, 본 발명에 따른 케이블 지지 가이드가 수평을 이루는 경우나 그러한 구간에 위치하는 경우(도 7의 (a) 참고)에는 금속 스트립(110)과 접촉되지 않거나 접촉을 최소화한다. Accordingly, when the cable support guide according to the present invention is horizontal or located in such a section (see FIG. 7A), the cable support guide is not in contact with or minimizes contact with the metal strip 110.
반면, 케이블 지지 가이드가 굴곡지게 변형되는 경우(도 7의 (b) 참고)에는 아치 형상으로 변형된 금속 스트립(110)과 면접촉됨으로써 금속 스트립(110)에 가해지는 충격을 분산하고 금속 스트립(110)의 변형이나 파손을 방지한다.On the other hand, when the cable support guide is bent deformed (see FIG. 7B), the cable support guide is in surface contact with the metal strip 110 deformed into an arch shape to disperse the impact applied to the metal strip 110 and to the metal strip ( 110) to prevent deformation or breakage.
이하, 첨부된 도면을 참조하여 본 발명의 제1 실시예에 따른 케이블 지지 가이드의 조립 순서 및 작동 관계에 대해 설명한다.Hereinafter, the assembling procedure and operation relationship of the cable support guide according to the first embodiment of the present invention will be described with reference to the accompanying drawings.
도 5의 (a) 내지 (e)와 같이, 본 발명에 따른 케이블 지지 가이드는 일 실시예로써 금속 스트립(110), 가압 고정구(120), 보강 프레임(140), 지지 블럭(130) 및 조인트 커버(150)의 순서로 조립된다.As shown in Figure 5 (a) to (e), the cable support guide according to the present invention is a metal strip 110, the pressing fixture 120, the reinforcing frame 140, the support block 130 and the joint in one embodiment Assembled in the order of the cover 150.
도 5의 (a)와 같이 금속 스트립(110)에는 스트립 조립공(111)이 형성되어 있다. 따라서, 도 5의 (b)와 같이 가압 고정구(120)를 금속 스트립(110)의 저면부에서 조립하여 걸림구(122)가 스트립 조립공(111)을 관통되게 한다.As shown in FIG. 5A, a strip assembly hole 111 is formed in the metal strip 110. Therefore, as shown in FIG. 5 (b), the pressing fixture 120 is assembled at the bottom of the metal strip 110 so that the catch 122 may pass through the strip assembly hole 111.
이때 부착판(121)의 좌우 양측 단부에서 각각 상측으로 절곡된 가압 날개(123)는 금속 스트립(110)의 좌우측 가장자리를 통해 수직 방향으로 상향 연장되어 있다. 따라서, 금속 스트립(110) 위에 놓이는 지지 블럭(130)의 조립 날개(133)에 결합될 수 있게 된다.At this time, the pressing blades 123 bent upward from the left and right both ends of the attachment plate 121 extends upward in the vertical direction through the left and right edges of the metal strip 110. Thus, it can be coupled to the assembly wing 133 of the support block 130 overlying the metal strip 110.
다음, 도 5의 (c)와 같이 금속 스트립(110)의 상면에 보강 프레임(140)이 안착된다. 보강 프레임(140)의 보강판(141)은 금속 스트립(110) 위에 지지되고, 보강 기둥(142)은 금속 스트립(110)의 상면으로 돌출된 가압 고정구(120)의 걸림구(122)에 끼워진다.Next, the reinforcing frame 140 is seated on the upper surface of the metal strip 110 as shown in (c) of FIG. The reinforcement plate 141 of the reinforcement frame 140 is supported on the metal strip 110, and the reinforcement pillar 142 is fitted to the catch 122 of the pressure fixture 120 protruding to the upper surface of the metal strip 110. Lose.
다음, 도 5의 (d)와 같이 각각의 보강 프레임(140)을 덮도록 금속 스트립(110)의 상면에 지지 블럭(130)이 안착되며, 지지 블럭(130)의 블럭 상판(131)에서 하측으로 돌출된 끼움 돌기(131a)는 보강 기둥(142)의 상부로 끼워진다.Next, as shown in (d) of FIG. 5, the support block 130 is seated on the upper surface of the metal strip 110 to cover each reinforcement frame 140, and the lower side of the block upper plate 131 of the support block 130. The fitting protrusion 131a protruding into the upper portion of the reinforcing pillar 142 is fitted.
이와 같이 보강 기둥(142)을 갖는 보강 프레임(140)을 더 구비하면, 하부에 배치된 가압 고정구(120) 및 상부에 배치된 지지 블럭(130)이 보강 프레임(140)에 공통 조립되어, 각 부품들을 임시로 조립할 수 있게 한다.When the reinforcement frame 140 having the reinforcement pillars 142 is further provided, the pressing fixture 120 disposed below and the support block 130 disposed above are commonly assembled to the reinforcement frame 140. Allows the assembly of parts temporarily.
따라서, 지지 블럭(130)이 임시로 조립된 상태에서 가압 고정구(120)의 가압 날개(123)를 펀칭 기계 등을 이용하여 내측으로 구부리면, 가압 날개(123)가 지지 블럭(130)의 조립 날개(133) 위에 포개어진다. 따라서, 도 6의 (a)와 같이 고정이 완료된다.Accordingly, when the pressure blade 123 of the pressure fixture 120 is bent inwardly using a punching machine or the like in the state in which the support block 130 is temporarily assembled, the pressure blade 123 is an assembly blade of the support block 130. Overlaid on (133). Therefore, fixing is completed as shown in FIG.
다음, 도 5의 (e)와 같이 지지 블럭(130)이 금속 스트립(110)에 고정된 이후에 조인트 커버(150)를 조립한다. 조립시 조인트 커버(150)가 상부에서부터 하부으로 눌러져 끼움 결합이 이루어진다. 따라서, 도 6의 (b)와 같이 지지 블럭(130)의 힌지축(132c)에 조인트 커버(150)의 결합공(152a)이 끼워진다.Next, as shown in FIG. 5E, the joint cover 150 is assembled after the support block 130 is fixed to the metal strip 110. When assembling the joint cover 150 is pressed from the top to the bottom is made fitting. Therefore, as shown in FIG. 6B, the coupling hole 152a of the joint cover 150 is fitted into the hinge shaft 132c of the support block 130.
한편, 도 7의 (a)에 도시된 바와 같이, 케이블 지지 가이드가 수평 상태에 있는 경우, 인접하는 두 지지 블럭(130)의 치합 돌기(132a)와 치합 홈(132b)이 서로 맞물려 치합된다.On the other hand, as shown in Figure 7 (a), when the cable support guide is in a horizontal state, the engaging projection 132a and the engaging groove 132b of the two adjacent support blocks 130 are engaged with each other and engaged.
또한, 지지 블럭(130)의 하측 단부가 금속 스트립(110)을 가압하며, 조인트 커버(150)는 인접하는 두 지지 블럭(130)의 연접부를 덮되 전후방측 경사 지지판(151a)의 연단부가 지지 블럭(130)의 블럭 상판(131)를 가압한다. 따라서, 지지 블럭(130)이 안정적으로 수평 상태를 유지하고 하방으로 처지는 것을 방지한다.In addition, the lower end of the support block 130 pressurizes the metal strip 110, and the joint cover 150 covers the joints of two adjacent support blocks 130, and the edges of the front and rear inclined support plates 151a are supported by the support block. The block top plate 131 of 130 is pressed. Thus, the support block 130 is stably horizontally prevented from sagging downward.
또한, 조인트 커버(150)가 지지 블럭(130)의 연접부를 측방에서도 역시 덮고 있기 때문에 지지 블럭(130)을 포함한 케이블 지지 가이드가 전체 길이에서 좌우로 흔들리거나 구부러지는 현상을 방지하고 측방으로 쓰러지는 현상 역시 방지된다.In addition, since the joint cover 150 also covers the connecting portion of the support block 130 from the side, the cable support guide including the support block 130 is prevented from swaying or bending from side to side in the entire length and falling to the side. It is also prevented.
이때, 조인트 커버(150)의 하부 접촉편(153)은 금속 스트립(110)의 상부 표면으로부터 일정 간격 이격되어 있어 금속 스트립(110)의 손상 및 파손을 방지한다.In this case, the lower contact piece 153 of the joint cover 150 is spaced apart from the upper surface of the metal strip 110 by a predetermined distance to prevent damage and breakage of the metal strip 110.
반면, 도 7의 (b)에 도시된 바와 같이, 케이블 지지 가이드가 굴곡진 상태로 변형되는 경우, 인접하는 2개의 지지 블럭(130)이 힌지축(132c)에 의해 상방으로 선회된다. 아울러 2개의 지지 블럭(130)이 서로 반대 방향으로 이동되어 치합 돌기(132a)와 치합 홈(132b) 사이의 결합이 해제되면서 굴곡 변형이 이루어진다.On the contrary, as shown in FIG. 7B, when the cable support guide is deformed to the curved state, two adjacent support blocks 130 are pivoted upward by the hinge shaft 132c. In addition, the two support blocks 130 are moved in opposite directions to each other, and the coupling between the fitting protrusion 132a and the fitting groove 132b is released, thereby forming a bending deformation.
이때, 지지 블럭(130)이 과도하게 선회되면 케이블 지지 가이드가 일정한 곡률로 유지되지 못하고 처지게 되는데, 본 발명에 따른 케이블 지지 가이드는 조인트 커버(150)의 커버 상판(151)에 의해 두 지지 블럭(130)의 선회가 제한된다.In this case, if the support block 130 is excessively turned, the cable support guide is not maintained at a constant curvature and sags. The cable support guide according to the present invention is supported by two cover blocks by the cover top plate 151 of the joint cover 150. The turning of 130 is limited.
즉, 인접한 2개의 지지 블럭(130)이 선회시 선단부가 조인트 커버(150)의 커버 상판(151)에 걸려 더 이상 선회되지 못하므로 설정됨 범위 내의 특정 곡률을 유지하고, 케이블을 견고하게 지지할 수 있게 된다.That is, when two adjacent support blocks 130 are pivoting, the tip portion is caught by the cover upper plate 151 of the joint cover 150 and can no longer be pivoted to maintain a specific curvature within the set range and firmly support the cable. It becomes possible.
또한, 케이블 지지 가이드가 굴곡진 상태로 변형되는 경우, 조인트 커버(150)의 하부에 구비된 접촉편(153)의 만곡부가 아치 형상으로 변형된 금속 스트립(110)과 면 접촉됨으로써 국부적인 접촉이나 충격에 의해 금속 스트립(110)이 손상 또는 파손되는 것을 방지한다.In addition, when the cable support guide is deformed into a curved state, the curved portion of the contact piece 153 provided at the lower portion of the joint cover 150 is brought into surface contact with the metal strip 110 deformed into an arch shape, thereby making local contact or The metal strip 110 is prevented from being damaged or broken by the impact.
도 8에는 본 발명에 따른 케이블 지지 가이드가 방향 전환 위치에서 '⊃' 형상으로 굴곡지게 변형된 상태로 케이블(미도시)과 함께 이동될 때의 모습이 도시되어 있다.8 is a view when the cable support guide according to the present invention is moved together with the cable (not shown) in a state that is bent in a '⊃' shape in the direction change position.
본 발명에 따른 케이블 지지 가이드는 도 1에 도시된 바와 같은 가요성 벨트부재(110)에 케이블 등과 함께 삽입되고, 일측이 일정한 곡률로 굴곡 변형된 상태로 이동되면서 케이블을 지지 및 가이드한다.The cable support guide according to the present invention is inserted together with a cable or the like in the flexible belt member 110 as shown in FIG. 1, and supports and guides the cable while one side is bent and deformed at a constant curvature.
한편, 위에서 설명을 생략한 도 9는 본 발명에 따른 케이블 지지 가이드를 조립하기 위한 장치의 일 실시예를 나타낸다.On the other hand, Figure 9 omitted above shows an embodiment of the device for assembling the cable support guide according to the present invention.
도시된 바와 같이 수직축 방향으로 금속 스트립(110)이 배치되고, 이송 스트립에는 가압 고정구(120) 및 보강 프레임(140)이 조립된 상태에서 조립이 완료될 때마다 수직 방향으로 순차로 이송된다.As shown, the metal strip 110 is disposed in the vertical axis direction, and the transfer strip is sequentially transferred in the vertical direction whenever the assembly is completed in the state in which the pressing fixture 120 and the reinforcing frame 140 are assembled.
수평축 방향으로는 조인트 커버(150)가 이송된다. 조인트 커버(150)는 수평 이송장치(T)에 의해 순차 이송되며, 조인트 커버(150)는 수평 이송장치(T)의 연결 리드(L)에 부착된 상태에서 순차로 이송된다.The joint cover 150 is conveyed in the horizontal axis direction. The joint cover 150 is sequentially conveyed by the horizontal conveyer T, and the joint cover 150 is sequentially conveyed in a state where it is attached to the connection lead L of the horizontal conveyer T.
따라서, 수평축과 수직축의 교차 지점에 조인트 커버(150I)가 이송된 후에는 펀칭 기계(P)가 하강하여 가압 고정구(120)의 가압 날개(123)를 눌러 내측으로 구부리고, 그에 따라 지지 블럭(130)의 조립 날개(133)와 결합된다.Therefore, after the joint cover 150I is transferred to the intersection point of the horizontal axis and the vertical axis, the punching machine P descends and presses the pressure wing 123 of the pressure fixture 120 to bend inward, thereby supporting the support block 130. It is coupled with the assembly blade 133 of the).
그 후 금속 스트립(110)은 상측 방향으로 이동하여 다음번의 가압 고정구(120) 및 보강 프레임(140)이 투입되고, 가공 전인 후속의 조인트 커버(150B)는 우측 방향으로 이동하여 다시 상술한 교차 지점으로 이동하고 펀칭이 이루어진다.After that, the metal strip 110 is moved upward, and the next pressing fixture 120 and the reinforcing frame 140 are put in, and the subsequent joint cover 150B before the processing is moved in the right direction and again the aforementioned intersection point. And punching is done.
이하, 첨부된 도면을 참조하여 본 발명의 제2 실시예에 따른 케이블 지지 가이드에 대해 상세히 설명한다.Hereinafter, a cable support guide according to a second embodiment of the present invention will be described in detail with reference to the accompanying drawings.
도 10에 도시된 바와 같이, 본 발명에 따른 케이블 지지 가이드는 금속 스트립(10), 지지 블럭(200) 및 조인트 커버(300)를 포함하여 이루어진다.As shown in FIG. 10, the cable support guide according to the invention comprises a metal strip 10, a support block 200 and a joint cover 300.
금속 스트립(10)은 길이 방향으로 연장 형성된 비교적 얇은 가요성 금속 띠로서, 본 발명에 따른 케이블 지지 가이드가 아치 형상으로 굴곡지게 변형될 수 있도록 하며, 그 재질에는 특별한 제한이 없으나 강도와 내마모성 등을 고려할 때 스테인레스 스틸 재질로 구성되는 것이 바람직하다.The metal strip 10 is a relatively thin flexible metal strip extending in the longitudinal direction, and allows the cable support guide according to the present invention to be bent into an arch shape, and the material is not particularly limited, but the strength and abrasion resistance are not limited. In consideration it is preferred to consist of stainless steel material.
지지 블럭(200)은 상기 금속 스트립(10)에 다수개가 연속적으로 인접 배치되어 결합됨에 따라 다관절을 형성하여 특정 곡률로 굴곡진 상태로 유지시켜주는 수단으로서, 몸체(210)와 결합띠(220)를 포함하여 구성되며, 스테인레스 스틸 등과 같은 금속재로 구성된다.The support block 200 is a means for forming a multiple joint and maintaining the curved state at a specific curvature as the plurality of metal strips 10 are continuously disposed adjacent to and coupled to the metal strip 10. The body 210 and the coupling band 220 ), And is made of a metal material such as stainless steel.
지지 블럭(200)을 금속 스트립(10)에 설치시, 일 예로 금속 스트립(10)의 길이 방향 양단부를 기계로 잡아당겨 인장시킨 상태에서 다수개의 지지 블럭(200)을 금속 스트립(10)의 상면에 연속 배치한다. 그 후 사용시에는 금속 스트립(10)이 다시 수축되므로 지지 블럭(200)들이 서로 치합된다.When the support block 200 is installed on the metal strip 10, for example, a plurality of support blocks 200 are formed on the upper surface of the metal strip 10 in a state where both ends of the lengthwise ends of the metal strip 10 are pulled out by a machine. To be placed consecutively. In use thereafter, the metal strip 10 is contracted again so that the support blocks 200 are engaged with each other.
도 11에 도시된 바와 같이, 상기 지지 블럭(200)의 몸체(210)는 블럭 상판(212)과, 상기 블럭 상판(212) 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성되는 블럭 측판(214)으로 구성되어, 전후방측 및 하방측이 개구된 대체로 'П' 자 형상의 단면을 갖는 블록체이다. As shown in FIG. 11, the body 210 of the support block 200 has a block upper plate 212 and a block side plate 214 extending and bent vertically downward from both left and right edges of the block upper plate 212. It is composed of a block body having a generally 'П' shaped cross section, the front and rear and the lower side is opened.
여기서, 상기 몸체(210)의 블럭 상판(212) 너비, 다시 말해서, 좌우 양측 블럭 측판(214) 사이의 거리는 상기 금속 스트립(10)의 너비보다 더 작게 형성되어, 상기 몸체(210)의 블럭 측판(214) 저면이 상기 금속 스트립(10)의 상부 표면상에 배치된다. Here, the width of the block top plate 212 of the body 210, that is, the distance between the left and right both side block side plate 214 is formed smaller than the width of the metal strip 10, the block side plate of the body 210 A bottom surface is disposed on the top surface of the metal strip 10.
또한, 지지 블럭(200)의 좌우 양측 블럭 측판(214)에는 2개의 힌지공(214a)이 소정 간격 이격되어 나란히 형성된다. 보다 구체적으로, 상기 힌지공(214a)은 상기 블럭 측판(214)의 양 단부측에 각각 형성되는 것이 바람직하다. In addition, two hinge holes 214a are formed side by side at predetermined intervals in the left and right side block side plates 214 of the support block 200. More specifically, the hinge holes 214a are preferably formed at both end sides of the block side plate 214, respectively.
힌지공(214a)에는 후술하는 결합핀(324)이 관통 삽입되며, 상기 결합핀(324)이 힌지축으로 작용하여 상기 지지 블럭(200)이 결합핀(324)을 중심으로 선회가능하게 결합된다.A coupling pin 324 to be described later is inserted into the hinge hole 214a, and the coupling pin 324 acts as a hinge axis so that the support block 200 is pivotally coupled around the coupling pin 324. .
그리고, 상기 지지 블럭(200)의 좌우 양측 블럭 측판(214)의 전후방측 단부 중 어느 하나에는 원호 형상으로 돌출 형성된 치합 돌기(214b)가 구비되고, 나머지 다른 단부에는 상기 치합 돌기(214b)와 치합되는 오목한 치합 홈(214c)이 형성된다. 이러한 구성에 따라, 연속적으로 배치되는 다수개의 지지 블럭(200)이 인접 지지 블럭(200)과 연속적으로 치합된다. And, one of the front and rear side ends of the left and right side block side plate 214 of the support block 200 is provided with a fitting protrusion 214b protruding in an arc shape, the other end is engaged with the fitting protrusion 214b. A concave engagement groove 214c is formed. According to this configuration, a plurality of support blocks 200 arranged in series are continuously engaged with the adjacent support blocks 200.
한편, 또 다른 실시예로서, 도 11의 원 내부에 도시된 지지 블럭(200)과 같이, 상기 지지 블럭(200)의 좌우 양측 블럭 측판(214)에는 힌지공(214a) 대신에 결합돌기(214d)가 전방측 및 후방측에 각각 돌출 형성되는 것이 바람직하다. On the other hand, as another embodiment, as shown in the support block 200 shown in the circle of Figure 11, the left and right side block side plate 214 of the support block 200, instead of the hinge hole (214a) engaging projection 214d ) Is preferably formed to protrude on the front side and the rear side, respectively.
이 결합돌기(214d)는 후술하는 조인트 커버(300)의 결합공(322)에 끼움 결합되고, 지지 블럭(200)이 조인트 커버(300)에 대해 선회될 때 힌지축으로서 작용한다. 상기 지지 블럭(200)의 블럭 측판(214)에 결합돌기(214d)가 형성되는 경우에는 상기한 결합핀(324)은 불필요하게 된다.The engaging projection 214d is fitted into the engaging hole 322 of the joint cover 300 to be described later, and acts as a hinge axis when the support block 200 is pivoted relative to the joint cover 300. When the coupling protrusion 214d is formed on the block side plate 214 of the support block 200, the coupling pin 324 is unnecessary.
한편, 지지 블럭(200)의 좌우 양측 블럭 측판(214)의 하단부 외측에는 결합띠(220)가 형성된다. 상기 결합띠(220)는 지지 블럭(200)의 몸체(210)를 금속 스트립(10)에 고정 결합시키기 위한 것으로, 블럭 측판(214)의 하단부 외측으로 수평 연장되다가 다시 내측으로 절곡되어 압착된다.On the other hand, the coupling strip 220 is formed on the outside of the lower end of the left and right side block side plate 214 of the support block 200. The coupling strip 220 is for fixedly coupling the body 210 of the support block 200 to the metal strip 10, and is horizontally extended to the outside of the lower end of the block side plate 214 and then bent inward to be pressed.
따라서, 상기 금속 스트립(10)의 좌우 양측 가장자리 부분을 상하로 둘러싸는 형태로 압착되어 상기 금속 스트립(10)에 견고하게 고정 결합된다. 도 11에서는 상기 결합띠(220)가 금속 스트립(10)에 결합되기 전의 상태가 도시되며, 도 12에는 상기 결합띠(220)가 절곡 압착되어 금속 스트립(10)과 결합된 상태가 도시된다.Therefore, the left and right edges of the metal strip 10 are compressed in a form surrounding the top and bottom, and are firmly fixed to the metal strip 10. 11 illustrates a state before the coupling strip 220 is coupled to the metal strip 10, and FIG. 12 illustrates a state in which the coupling strip 220 is bent and compressed to be coupled to the metal strip 10.
조인트 커버(300)는 인접 배치된 2개의 지지 블럭(200)을 상호 선회가능하게 연결하고, 상기 지지 블럭(200)이 과도하게 선회되는 것을 제한하기 위하여 상기 인접 배치된 2개의 지지 블럭(200)간 연접부를 상방 및 측방에서 덮는 수단이다.The joint cover 300 pivotally connects two adjacently disposed support blocks 200 to each other, and restricts the excessively pivoting of the support blocks 200 to the two adjacently disposed support blocks 200. It is a means which covers a liver junction from upper and side sides.
도 11에 도시된 바와 같이, 상기 조인트 커버(300)는 커버 상판(310)과, 상기 커버 상판(310)의 좌우 양측에 각각 수직 하방으로 연장 형성된 커버 측판(320)을 포함하여 단면이 대체로 'П' 자 형상으로 구성된다. As shown in FIG. 11, the joint cover 300 includes a cover upper plate 310 and a cover side plate 320 extending vertically downward on left and right sides of the cover upper plate 310, respectively, and having a cross-section of ' It consists of a 'P' shape.
상기 커버 상판(310)은 인접 배치된 두 지지 블럭(200)의 블럭 상판(212) 연접부를 상방에서 덮되(즉, 두 지지 블럭(200)의 서로 마주보는 블럭 상판(212)의 각 단부를 상방에서 동시에 덮어줌), 전후방측 단부가 하방으로 소정 각도로 절곡 형성된다. The cover top plate 310 covers the upper portion of the block top plate 212 of the two support blocks 200 adjacent to each other from above (that is, each end of the block top plate 212 facing each other of the two support blocks 200 upwards). At the same time), the front and rear ends are formed bent downward at a predetermined angle.
상기 커버 측판(320)은 지지 블럭(200)의 블럭 측판(214) 연접부를 외측에서 덮어주며(즉, 두 지지 블럭(200)의 서로 마주보는 블럭 측판(214)의 각 단부를 외측에서 동시에 덮어줌), 상기 커버 측판(320)과 인접하는 2개의 지지 블럭(200)의 블럭 측판(214)은 결합핀(324)에 의해 결합된다. The cover side plate 320 covers the block side plate 214 junction of the support block 200 from the outside (that is, simultaneously covers each end of the block side plate 214 facing each other of the two support blocks 200 from the outside at the same time). Zoom), the block side plate 214 of the two support blocks 200 adjacent to the cover side plate 320 is coupled by a coupling pin 324.
보다 구체적으로, 상기 조인트 커버(300)의 좌우 양측 커버 측판(320)에는 2개의 결합공(322)이 소정 간격 이격되어 나란히 배치되되, 상기 커버 측판(320)의 양 단부측에 각각 형성되는 것이 바람직하다. More specifically, the left and right both side cover side plates 320 of the joint cover 300 are arranged side by side with two coupling holes 322 spaced apart by a predetermined interval, respectively formed on both end sides of the cover side plate 320 desirable.
그리고, 상기 조인트 커버(300)는 인접하는 2개의 지지 블럭(200)의 연접부를 상부에서 커버하도록 결합된 상태에서 조인트 커버(300)의 커버 측판(320)에 형성된 결합공(322)과 지지 블럭(200)의 힌지공(214a)을 관통하는 결합핀(324)에 의해 상호 선회가능하게 결합된다. In addition, the joint cover 300 is a coupling hole 322 and the support block formed in the cover side plate 320 of the joint cover 300 in a state coupled to cover the joints of two adjacent support blocks 200 from the top It is rotatably coupled to each other by a coupling pin 324 penetrating through the hinge hole 214a of the (200).
여기서, 상기 결합핀(324)은 단일 핀으로 구성될 수도 있고, 도 11에 도시된 바와 같이, 암결합핀(324a)과 수결합핀(324b)이 조인트 커버(300)의 좌우 양측 커버 측판(320)의 각 결합공(322)을 통하여 삽입된 후 끼움결합되는 형태로 구성될 수도 있다.Here, the coupling pin 324 may be composed of a single pin, as shown in Figure 11, the female coupling pin 324a and the male coupling pin (324b) is the left and right cover side plates of the joint cover 300 ( It may be configured in a form that is inserted through each of the coupling holes 322 of 320 and then fitted.
상기 커버 측판(320)의 하부에는 접촉편(326)이 하방으로 돌출 형성된다. 상기 접촉편(326)은 하부면이 오목하게 원호형상으로 만곡되어, 도 13의 (a)에 도시된 바와 같이, 본 발명에 따른 케이블 지지 가이드가 수평을 이루는 경우 또는 그러한 구간에서는 금속 스트립(10)과 접촉되지 않거나 접촉을 최소화한다.A contact piece 326 protrudes downward from the bottom of the cover side plate 320. The contact piece 326 is curved in an arc shape with a lower surface concave, and as shown in FIG. 13A, when the cable support guide according to the present invention is horizontal or in such a section, the metal strip 10. Contact with or minimize contact.
도 13의 (b)에 도시된 바와 같이, 케이블 지지 가이드가 굴곡지게 변형되는 경우에는 아치 형상으로 변형된 금속 스트립(10)의 상부 표면과 안정적으로 면접촉됨으로써 금속 스트립(10)에 가해지는 충격이 분산되어 금속 스트립(10)의 변형이나 파손을 방지하는데 기여한다. As shown in FIG. 13B, when the cable support guide is flexibly deformed, the impact applied to the metal strip 10 by stably surface contacting the upper surface of the metal strip 10 deformed into an arch shape. This dispersion contributes to preventing deformation or breakage of the metal strip 10.
한편, 상기 지지 블럭(200)은 결합핀(324)을 중심으로 선회가능함과 동시에 조인트 커버(300)에 대해 상대 이동가능하도록 구성되는 것이 바람직하다. 즉, 본 발명에 따른 케이블 지지 가이드가 수평을 이루는 경우에는 인접하는 두 지지 블럭(200)이 서로 치합되어 붙어있다가, 케이블 지지 가이드가 굴곡지게 변형되는 경우에는 두 지지 블럭(200)이 반대방향으로 이동하여 상호 이격됨에 따라 굴곡 변형이 원활하게 일어나도록 하는 것이 바람직하다. On the other hand, the support block 200 is preferably configured to be movable relative to the joint cover 300 at the same time rotatable around the coupling pin 324. In other words, when the cable support guide according to the present invention is horizontal, two adjacent support blocks 200 are engaged with each other, and when the cable support guide is bent, the two support blocks 200 are in opposite directions. As it moves to and spaced apart from each other it is desirable to smoothly occur the bending deformation.
이를 위해, 도 11에서 살펴본 바와 같이, 상기 지지 블럭(200)의 힌지공(214a)은 결합핀(324)의 직경에 상응하는 원형홀로 구성되고, 조인트 커버(300)의 결합공(322)은 장공 형태로 구성될 수 있다.To this end, as shown in Figure 11, the hinge hole 214a of the support block 200 is composed of a circular hole corresponding to the diameter of the coupling pin 324, the coupling hole 322 of the joint cover 300 is It may be configured in the form of a long hole.
다만, 도시되지는 않았으나, 위와 반대로, 상기 지지 블럭(200)의 힌지공(214a)을 장공 형태로 구성하고, 조인트 커버(300)의 결합공을 원형으로 구성할 수도 있다. However, although not shown, on the contrary, the hinge hole 214a of the support block 200 may be configured in a long hole shape, and the coupling hole of the joint cover 300 may be configured in a circular shape.
지금까지 본 발명에 따른 케이블 지지 가이드의 구성에 대하여 설명하였는바, 이하에서는 도 13 및 도 14를 참조로 본 발명의 제2 실시예에 따른 케이블 지지 가이드의 작동 관계에 대하여 설명하기로 한다.The configuration of the cable support guide according to the present invention has been described so far. Hereinafter, an operation relationship of the cable support guide according to the second embodiment of the present invention will be described with reference to FIGS. 13 and 14.
도 13의 (a)에 도시된 바와 같이, 케이블 지지 가이드가 수평 상태에 있는 경우, 인접하는 두 지지 블럭(200)의 치합 돌기(214b)와 치합 홈(214c)이 서로 맞물려 치합되고, 지지 블럭(200)의 하측 단부 저면이 금속 스트립(10)을 가압하며, 상방에서 조인트 커버(300)가 인접하는 두 지지 블럭(200)의 연접부를 덮되 전후방측 절곡부의 단부가 두 지지 블럭(200)의 블럭 상판(212) 상부 표면과 접촉되면서 가압함에 따라 두 지지 블럭(200)이 안정적으로 수평 상태를 유지하고 하방으로 처지는 것을 방지해 준다. As shown in FIG. 13A, when the cable support guide is in a horizontal state, the engaging projections 214b and the engaging grooves 214c of two adjacent supporting blocks 200 are engaged with each other, and the supporting blocks are engaged. The bottom end of the lower end portion 200 presses the metal strip 10, and the joint cover 300 covers the joint portion of the two support blocks 200 adjacent to each other from above, and the front and rear ends of the bending portions of the two support blocks 200 are formed. As the pressing contact with the upper surface of the block top plate 212, the two support blocks 200 are stably leveled and prevents sagging downwards.
또한, 조인트 커버(300)가 지지 블럭(200)의 연접부를 측방에서도 역시 덮고 있기 때문에 지지 블럭(200)을 포함한 전체 케이블 지지 가이드가 좌우로 흔들리거나 구부러지는 현상 및 측방으로 쓰러지는 현상이 방지된다. In addition, since the joint cover 300 also covers the joint portion of the support block 200 from the side, the entire cable support guide including the support block 200 is prevented from swaying or bending from side to side and falling from side to side.
그리고, 이미 언급한 바와 같이, 조인트 커버(300)의 하부 접촉편(326)은 금속 스트립(10)의 상부 표면으로부터 일정 간격 이격되어 있어 금속 스트립(10)의 손상 및 파손을 방지한다.And, as already mentioned, the lower contact piece 326 of the joint cover 300 is spaced apart from the upper surface of the metal strip 10 to prevent damage and breakage of the metal strip 10.
한편, 도 13의 (b)에 도시된 바와 같이, 케이블 지지 가이드가 굴곡진 상태로 변형되는 경우, 인접하는 두 지지 블럭(200)이 결합핀(324)을 힌지축으로 하여 상방으로 선회됨과 아울러 서로 반대 방향으로 이동되어 치합 돌기(214b)와 치합 홈(214c) 사이의 결합이 해제되면서 케이블 지지 가이드가 굴곡지게 변형될 수 있다. On the other hand, as shown in Figure 13 (b), when the cable support guide is deformed in a curved state, the two adjacent support block 200 is pivoted upward with the coupling pin 324 as the hinge axis, The cable support guide may be bent to deform as the coupling between the fitting protrusion 214b and the fitting groove 214c is released in the opposite direction.
이때, 지지 블럭(200)이 과도하게 선회되면 케이블 지지 가이드가 일정한 곡률로 유지되지 못하고 처지게 되는데, 본 발명에 따른 케이블 지지 가이드에서는, 상기 조인트 커버(300)의 커버 상판(310)에 의해 두 지지 블럭(200)의 선회가 제한되어(두 지지 블럭(200)이 상방으로 선회시 선단부가 조인트 커버(300)의 커버 상판(310) 하부 표면에 걸려 더 이상 선회되지 못하게 됨), 일정한 곡률로 유지될 수 있으므로 견고한 케이블 지지력이 발생하게 된다. At this time, if the support block 200 is excessively turned, the cable support guide is not maintained at a constant curvature and sags. In the cable support guide according to the present invention, the cover top plate 310 of the joint cover 300 is placed by two. Since the pivot of the support block 200 is limited (when the two support blocks 200 are pivoted upward, the tip end is caught by the lower surface of the cover upper plate 310 of the joint cover 300 and no longer pivots), and thus the curvature is constant. This can be maintained, resulting in a firm cable support.
또한, 이와 같이 케이블 지지 가이드가 굴곡진 상태로 변형되는 경우, 조인트 커버(300) 하부의 접촉편(326) 저면의 오목한 만곡부가 아치 형상으로 변형된 금속 스트립(10)과 면 접촉 함으로써 국부적인 접촉이나 충격에 의해 금속 스트립(10)이 손상 또는 파손되는 것을 방지할 수 있다.In addition, when the cable support guide is deformed in a curved state as described above, the concave curved portion of the bottom surface of the contact piece 326 under the joint cover 300 contacts the metal strip 10 deformed into the arch shape to make local contact. It is possible to prevent the metal strip 10 from being damaged or broken by impact or impact.
도 14에는 본 발명에 따른 케이블 지지 가이드가 실제 굴곡지게 변형된 상태로 케이블(미도시)과 함께 이동될 때의 모습이 측면도로 도시된다. 본 발명에 따른 케이블 지지 가이드는 도 1 에 도시된 바와 같은 가요성 벨트부재(110)에 케이블 등과 함께 삽입되고, 일측이 일정한 곡률로 굴곡 변형된 상태로 이동되면서 케이블을 지지 및 가이드한다. FIG. 14 is a side view of the cable support guide according to the present invention when moved with a cable (not shown) in an actual curved state. The cable support guide according to the present invention is inserted into the flexible belt member 110 as shown in FIG. 1 together with the cable, etc., and supports and guides the cable while one side is bent and deformed at a constant curvature.
이상, 본 발명의 특정 실시예에 대하여 상술하였다. 그러나, 본 발명의 사상 및 범위는 이러한 특정 실시예에 한정되는 것이 아니라, 본 발명의 요지를 변경하지 않는 범위 내에서 다양하게 수정 및 변형이 가능하다는 것을 본 발명이 속하는 기술 분야에서 통상의 지식을 가진 자라면 이해할 것이다. In the above, the specific Example of this invention was described above. However, the spirit and scope of the present invention is not limited to these specific embodiments, and various changes and modifications can be made without departing from the spirit of the present invention. Those who have it will understand.
따라서, 이상에서 기술한 실시예들은 본 발명이 속하는 기술 분야에서 통상의 지식을 가진 자에게 발명의 범주를 완전하게 알려주기 위해 제공되는 것이므로, 모든 면에서 예시적인 것이며 한정적이 아닌 것으로 이해해야만 하며, 본 발명은 청구항의 범주에 의해 정의될 뿐이다. Therefore, since the embodiments described above are provided to completely inform the scope of the invention to those skilled in the art, it should be understood that they are exemplary in all respects and not limited. The invention is only defined by the scope of the claims.

Claims (16)

  1. 가요성(flexibility)의 금속 스트립(110)과;A flexible metal strip 110;
    각각 상기 금속 스트립(110)의 상면에 고정되며, 다수개가 연속적으로 인접 배치되어 결합됨에 따라 다관절을 형성하는 지지 블럭(130); 및A support block 130 fixed to an upper surface of each of the metal strips 110 to form a multi-joint as a plurality of consecutively adjacently arranged and coupled to each other; And
    인접 배치된 2개의 지지 블럭(130)을 상호 선회가능하게 연결하되, 상기 인접 배치된 2개의 지지 블럭(130)간 연접부를 상방 및 측방에서 덮는 조인트 커버(150)를 포함하고;A joint cover (150) for pivotally connecting two adjacently disposed support blocks (130), said joint covers (150) covering the joints between the two adjacently disposed support blocks (130) upwardly and laterally;
    상기 금속 스트립(110)에는 상기 금속 스트립(110)의 길이 방향을 따라 일정 간격마다 스트립 조립공(111)이 관통 형성되어 있고,The metal strip 110 is formed through the strip assembly hole 111 at regular intervals along the longitudinal direction of the metal strip 110,
    상기 지지 블럭(130)의 좌우 양측부 하단에는 외측을 향해 연장된 조립 날개(133)가 각각 구비되어 있으며,The lower left and right sides of the support block 130 are provided with assembly wings 133 extending toward the outside, respectively,
    상기 금속 스트립(110)의 저면에 밀착되는 부착판(121)과, 상기 스트립 조립공(111)을 관통하여 상면으로 돌출되도록 상기 부착판(121)의 중심부에 형성된 걸림구(122) 및 상기 금속 스트립(110)의 좌우 양측 단부에서 상측을 향해 돌출되도록 상기 부착판(121)의 좌우 양측 단부에서 상방으로 절곡된 가압 날개(123)를 구비한 가압 고정구(120)를 더 포함하여,Attachment plate 121 is in close contact with the bottom surface of the metal strip 110, and the engaging hole 122 formed in the center of the attachment plate 121 and protrudes to the upper surface through the strip assembly hole 111 and the metal strip Further comprising a pressing fixture 120 having a pressure blade 123 bent upward from the left and right both ends of the attachment plate 121 to protrude upward from the left and right both ends of the 110,
    상기 금속 스트립(110)의 저면에 조립된 가압 고정구(120)의 가압 날개(123)가 내측으로 절곡됨에 따라 상기 지지 블럭(130)의 조립 날개(133) 위에 포개져 가압함으로써 상기 지지 블럭(130)이 금속 스트립(110)에 고정된 것을 특징으로 하는 케이블 지지 가이드.As the pressure wing 123 of the pressure fixture 120 assembled on the bottom of the metal strip 110 is bent inward, the support block 130 is piled up and pressed on the assembly wing 133 of the support block 130. Cable support guide, characterized in that is fixed to the metal strip (110).
  2. 제1항에 있어서,The method of claim 1,
    상기 조립 날개(133)에는 걸림홈 또는 걸림공(133a)이 형성되어 있으며,The assembly wing 133 has a locking groove or a locking hole (133a) is formed,
    상기 가압 날개(123)의 내측면에는 상기 걸림홈 또는 걸림공(133a)에 끼워져 맞물리는 후크(124)가 돌출 형성되어 있는 것을 특징으로 하는 케이블 지지 가이드.Cable support guide, characterized in that the inner side of the pressure wing 123 is formed to protrude hook 124 is fitted into the engaging groove or engaging hole (133a).
  3. 제1항에 있어서,The method of claim 1,
    상기 지지 블럭(130)은,The support block 130,
    블럭 상판(131) 및 상기 블럭 상판(131) 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성된 블럭 측판(132)을 포함하되, Block top plate 131 and the block top plate 131 includes a block side plate 132 which is bent and extended vertically downward from both left and right edges,
    상기 블럭 측판(132)의 전후방측 단부 중 어느 하나에는 치합 돌기(132a)가 구비되고, 나머지 단부에는 상기 치합 돌기(132a)와 치합되는 치합 홈(132b)이 형성되며,At least one of front and rear ends of the block side plate 132 is provided with a fitting protrusion 132a, and a remaining groove is formed with a fitting groove 132b engaged with the fitting protrusion 132a.
    상기 조립 날개(133)는 상기 블럭 측판(132)의 하단부에서 외측을 향해 연장 형성되어 있는 것을 특징으로 하는 케이블 지지 가이드.The assembly wing 133 is a cable support guide, characterized in that extending toward the outside from the lower end of the block side plate (132).
  4. 제3항에 있어서,The method of claim 3,
    상기 조인트 커버(150)는,The joint cover 150,
    커버 상판(151) 및 상기 커버 상판(151)의 좌우 양측 가장자리에서 각각 수직 하방으로 연장 형성된 커버 측판(152)을 포함하되,The cover upper plate 151 and the cover side plate 152 which extends vertically downward from the left and right sides of the cover upper plate 151, respectively,
    상기 커버 상판(151)은 인접 배치된 2개의 지지 블럭(130)의 블럭 상판(131) 연접부를 상방에서 덮고, 상기 커버 측판(152)은 지지 블럭(130)의 블럭 측판(132) 연접부를 측방에서 덮는 것을 특징으로 하는 케이블 지지 가이드.The cover top plate 151 covers the block top plate 131 junction of the two support blocks 130 adjacent to each other from above, and the cover side plate 152 is a side of the block side plate 132 junction of the support block 130. Cable support guide, characterized in that the cover.
  5. 제4항에 있어서,The method of claim 4, wherein
    상기 블럭 측판(132)의 양 단부측에는 각각 힌지축(132c)이 돌출 형성되어 있고,Hinge shafts 132c protrude from both end sides of the block side plate 132, respectively.
    상기 커버 측판(152)의 양 단부측에는 각각 결합공(152a)이 형성되어 있으며,Coupling holes 152a are formed at both end sides of the cover side plate 152, respectively.
    상기 조인트 커버(150)는 인접하는 2개의 지지 블럭(130)의 연접부를 상부 및 측방에서 덮도록 결합시, 1개의 조인트 커버(150)의 양 단부측에 각각 형성된 2개의 결합공(152a)이 인접한 2개의 지지 블럭(130)의 힌지축(132c)들 중 서로 인접한 힌지축(132c)에 각각 끼워져 상기 지지 블럭(130)이 상호 선회가능하게 결합되는 것을 특징으로 하는 케이블 지지 가이드.When the joint cover 150 is coupled to cover the joints of two adjacent support blocks 130 from the top and the side, two coupling holes 152a respectively formed at both end sides of one joint cover 150 are provided. Cable support guide, characterized in that the support block 130 is rotatably coupled to each other is fitted to the hinge shaft (132c) adjacent to each other of the hinge shaft (132c) of two adjacent support blocks (130).
  6. 제4항에 있어서,The method of claim 4, wherein
    상기 커버 상판(151)의 전후방측 단부에는 각각 하방으로 일정 각도 절곡된 경사 지지판(151a)이 구비되어 있는 것을 특징으로 하는 케이블 지지 가이드.Cable support guide, characterized in that the front and rear end portions of the cover upper plate 151 is provided with an inclined support plate (151a) bent downward at a predetermined angle, respectively.
  7. 제3항에 있어서,The method of claim 3,
    상기 금속 스트립(110)의 상면에 설치되어 상기 지지 블럭(130)을 보강하는 보강 프레임(140)을 더 포함하되,Further comprising a reinforcing frame 140 is installed on the upper surface of the metal strip 110 to reinforce the support block 130,
    상기 보강 프레임(140)은 상기 금속 스트립(110)의 상면에 안착되는 보강판(141)과, 상기 보강판(141)의 중심부에 구비되며 상하 관통된 형상의 보강 기둥(142)을 포함하고,The reinforcement frame 140 includes a reinforcement plate 141 seated on an upper surface of the metal strip 110 and a reinforcement column 142 provided in a central portion of the reinforcement plate 141 and having a vertically penetrated shape.
    상기 지지 블럭(130)의 블럭 상판(131)에는 하측으로 돌출된 끼움 돌기(131a)가 형성되어 있으며, The upper block 131 of the support block 130 is formed with a fitting projection 131a protruding downward,
    상기 금속 스트립(110)의 상면으로 돌출된 걸림구(122)는 상기 보강 기둥(142)의 저부에 끼워지고, 상기 블럭 상판(131)에 하측으로 돌출된 끼움 돌기(131a)는 상기 보강 기둥(142)의 상부에 끼워져 조립되는 것을 특징으로 하는 케이블 지지 가이드.The locking hole 122 protruding to the upper surface of the metal strip 110 is fitted to the bottom of the reinforcing pillar 142, the fitting protrusion 131a protruding downward to the block top plate 131 is the reinforcing pillar ( Cable support guide, characterized in that assembled on the top of the 142.
  8. 가요성(flexibility)의 금속 스트립(10)과;A flexible metal strip 10;
    각각 상기 금속 스트립(10)의 상면에 고정되며, 다수개가 연속적으로 인접 배치되어 결합됨에 따라 다관절을 형성하는 지지 블럭(200); 및A support block 200 fixed to an upper surface of each of the metal strips 10 and forming a plurality of joints as a plurality thereof are continuously disposed adjacent to each other; And
    인접 배치된 2개의 지지 블럭(200)을 상호 선회가능하게 연결하되, 상기 인접 배치된 2개의 지지 블럭(200)간 연접부를 상방 및 측방에서 덮는 조인트 커버(300)를 포함하고;A joint cover (300) which pivotally connects two adjacently disposed support blocks (200) to each other, the joint covering (300) covering the joints between the two adjacently disposed support blocks (200) upwardly and laterally;
    상기 지지 블럭(200)은,The support block 200,
    블럭 상판(212)과, 상기 블럭 상판(212) 좌우 양측 가장자리에서 수직 하방으로 절곡되어 연장 형성되는 블럭 측판(214)으로 구성되되, 상기 블럭 측판(214)의 전후방측 단부 중 어느 하나에는 치합 돌기(214b)가 구비되고, 나머지 다른 단부에는 상기 치합 돌기(214b)와 치합되는 치합 홈(214c)이 형성된 몸체(210)와;Block top plate 212 and the block side plate 212 is bent in the vertical downward from the left and right edges on both sides of the block top plate 212 is formed of, the one side of the front and rear sides of the block side plate 214 is a projection projection (214b) is provided, and the other end of the body 210 is formed with the engaging groove (214c) to be engaged with the engaging projection (214b);
    상기 지지 블럭(200)의 좌우 양측 블럭 측판(214)의 하단부 외측에 형성되되, 블럭 측판(214)의 하단부 외측으로 수평 연장되다가 다시 내측으로 절곡되어 압착됨에 따라 상기 금속 스트립(10)의 좌우 양측 가장자리 부분을 상하로 둘러싸는 형태로 압착되어 지지 블럭(200)의 몸체(210)를 금속 스트립(10)에 고정 결합시키는 결합띠(220)를 포함하는 것을 특징으로 하는 케이블 지지 가이드.It is formed on the outside of the lower end of the left and right side block side plate 214 of the support block 200, horizontally extended to the outside of the lower end of the block side plate 214 and then bent inward to be pressed again to the left and right both sides of the metal strip 10 Cable support guide is characterized in that it comprises a coupling strip (220) for crimping the upper and lower edges to securely couple the body (210) of the support block (200) to the metal strip (10).
  9. 제8항에 있어서,The method of claim 8,
    상기 몸체(210)의 좌우 양측 블럭 측판(214) 사이의 거리는 상기 금속 스트립(10)의 너비보다 더 작게 형성되어, 상기 몸체(210)의 블럭 측판(214) 저면이 상기 금속 스트립(10)의 상부 표면상에 배치되는 것을 특징으로 하는 케이블 지지 가이드.The distance between the left and right side block side plates 214 of the body 210 is formed to be smaller than the width of the metal strip 10, so that the bottom surface of the block side plate 214 of the body 210 is And a cable support guide disposed on the top surface.
  10. 제8항에 있어서,The method of claim 8,
    상기 조인트 커버(300)는,The joint cover 300,
    커버 상판(310)과;A cover top plate 310;
    상기 커버 상판(310)의 좌우 양측에 각각 수직 하방으로 연장 형성된 커버 측판(320)을 포함하되;It includes a cover side plate 320 extending vertically downward on the left and right sides of the cover upper plate 310, respectively;
    상기 커버 상판(310)은 인접 배치된 두 지지 블럭(200)의 블럭 상판(212) 연접부를 상방에서 덮고, 상기 커버 측판(320)은 지지 블럭(200)의 블럭 측판(214) 연접부를 외측에서 덮는 것을 특징으로 하는 케이블 지지 가이드.The cover upper plate 310 covers the upper portion of the block top plate 212 of the two support blocks 200 adjacent to each other, and the cover side plate 320 is connected to the block side plate 214 of the support block 200 from the outside. Cable support guide, characterized in that covering.
  11. 제10항에 있어서,The method of claim 10,
    상기 커버 상판(310)은 전후방측 단부가 하방으로 일정 각도 절곡 형성된 것을 특징으로 하는 케이블 지지 가이드.The cover upper plate 310 is a cable support guide, characterized in that the front and rear end is formed at a predetermined angle bent downward.
  12. 제10항에 있어서,The method of claim 10,
    상기 지지 블럭(200)의 좌우 양측 블럭 측판(214)의 양 단부측에는 각각 힌지공(214a)이 형성되고;Hinge holes 214a are formed at both end sides of the left and right side block side plates 214 of the support block 200, respectively;
    상기 조인트 커버(300)의 좌우 양측 커버 측판(320)의 양 단부측에는 각각 결합공(322)이 형성되며;Coupling holes 322 are formed at both end sides of the left and right cover side plates 320 of the joint cover 300, respectively;
    상기 조인트 커버(300)는 인접하는 2개의 지지 블럭(200)의 연접부를 상부 및 측방에서 커버하도록 결합된 상태에서 조인트 커버(300)의 커버 측판(320)에 형성된 결합공(322)과 지지 블럭(200)의 힌지공(214a)을 관통하는 결합핀(324)에 의해 상호 선회가능하게 결합되는 것을 특징으로 하는 케이블 지지 가이드.The joint cover 300 has a coupling hole 322 and a support block formed in the cover side plate 320 of the joint cover 300 in a state of being coupled to cover the joints of two adjacent support blocks 200 from above and from the side. Cable support guide, characterized in that the rotatably coupled to each other by a coupling pin (324) passing through the hinge hole (214a) of the (200).
  13. 제12항에 있어서,The method of claim 12,
    상기 지지 블럭(200)의 힌지공(214a)은 결합핀(324)의 직경에 상응하는 원형으로 구성되고, 조인트 커버(300)의 결합공(322)은 장공으로 구성되는 것을 특징으로 하는 케이블 지지 가이드.The hinge hole 214a of the support block 200 is configured in a circular shape corresponding to the diameter of the coupling pin 324, and the coupling hole 322 of the joint cover 300 is characterized in that the cable support is composed of long holes guide.
  14. 제12항에 있어서,The method of claim 12,
    상기 지지 블럭(200)의 힌지공(214a)은 장공으로 구성되고, 조인트 커버(300)의 결합공(322)은 원형으로 구성되는 것을 특징으로 하는 케이블 지지 가이드.The hinge hole (214a) of the support block 200 is composed of a long hole, the coupling hole of the joint cover 300, 322 is a cable support guide, characterized in that configured in a circular shape.
  15. 제10항에 있어서,The method of claim 10,
    상기 커버 측판(320)의 하부에는 아치 형상으로 굴곡지게 변형되는 금속 스트립(10)의 상부 표면과 면 접촉되도록 하부면이 오목하게 원호형상으로 만곡된 접촉편(326)이 하방으로 돌출 형성된 것을 특징으로 하는 케이블 지지 가이드.The lower side of the cover side plate 320 is characterized in that the lower surface is concave arcuately curved contact piece 326 protruding downward so as to be in contact with the upper surface of the metal strip 10 is bent in an arch shape. Cable support guide.
  16. 제10항에 있어서,The method of claim 10,
    상기 지지 블럭(200)의 좌우 양측 블럭 측판(214)의 양단 결합돌기(214d)가 각각 돌출 형성되고, 상기 각 결합돌기(214d)는 상기 조인트 커버(300)의 결합공(322)에 선회가능하게 끼움 결합되는 것을 특징으로 하는 케이블 지지 가이드.Both end engaging projections 214d of the left and right side block side plates 214 of the support block 200 protrude from each other, and the engaging projections 214d are pivotable in the coupling hole 322 of the joint cover 300. Cable support guide characterized in that the fitting.
PCT/KR2017/005370 2016-06-24 2017-05-24 Cable support guide WO2017222196A1 (en)

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KR10-2016-0078958 2016-06-24
KR1020160078958A KR101772922B1 (en) 2016-06-24 2016-06-24 Cable supporting guide

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