CN106757833A - Multilayer cut-parts automatic edge-adjusting mechanism - Google Patents

Multilayer cut-parts automatic edge-adjusting mechanism Download PDF

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Publication number
CN106757833A
CN106757833A CN201710087183.9A CN201710087183A CN106757833A CN 106757833 A CN106757833 A CN 106757833A CN 201710087183 A CN201710087183 A CN 201710087183A CN 106757833 A CN106757833 A CN 106757833A
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CN
China
Prior art keywords
cut
plate
location
parts
edge
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Granted
Application number
CN201710087183.9A
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Chinese (zh)
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CN106757833B (en
Inventor
张润明
梁海强
张玉田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Esquel Textiles Co Ltd
Guilin Esquel Textiles Co Ltd
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Guangdong Esquel Textiles Co Ltd
Guilin Esquel Textiles Co Ltd
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Application filed by Guangdong Esquel Textiles Co Ltd, Guilin Esquel Textiles Co Ltd filed Critical Guangdong Esquel Textiles Co Ltd
Priority to CN201710087183.9A priority Critical patent/CN106757833B/en
Publication of CN106757833A publication Critical patent/CN106757833A/en
Application granted granted Critical
Publication of CN106757833B publication Critical patent/CN106757833B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B35/00Work-feeding or -handling elements not otherwise provided for
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B27/00Work-feeding means
    • D05B27/10Work-feeding means with rotary circular feed members
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05DINDEXING SCHEME ASSOCIATED WITH SUBCLASSES D05B AND D05C, RELATING TO SEWING, EMBROIDERING AND TUFTING
    • D05D2207/00Use of special elements
    • D05D2207/02Pneumatic or hydraulic devices
    • D05D2207/04Suction or blowing devices

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Sewing Machines And Sewing (AREA)

Abstract

The invention discloses a kind of multilayer cut-parts automatic edge-adjusting mechanism.The multilayer cut-parts automatic edge-adjusting mechanism includes board, edge-adjusting device and cut-parts control side device;Edge-adjusting device includes fixed seat, the first location-plate, the second location-plate, the 3rd location-plate, the first blower and the second blower;Edge-adjusting device is used to carry out justified margin to double-deck or multilayer cut-parts.Cut-parts control side device includes keeper, sensing part and control side member, and keeper is located on the work top of board and positioned at the top of fixed seat;Sensing part is close to keeper;Cut-parts control side device is used to controlling being easy to all the time in positioning states of cut-parts, is not easy to deviation position.The multilayer cut-parts automatic edge-adjusting automatic mechanism degree is higher, section time power.

Description

Multilayer cut-parts automatic edge-adjusting mechanism
Technical field
The present invention relates to textile machine, more particularly to a kind of multilayer cut-parts automatic edge-adjusting mechanism.
Background technology
Be required for for the justified margin of two-layer or multilayer cut-parts starting sewing again in many operations of clothing, for example bury folder, Na Bo, rumble neck, net pin etc..Because the material of cut-parts is softer, it is difficult to control opposite side, so in many clothing automation equipments, This is acted or is gone to complete by workman opposite side, and artificial operation is wasted time and energy, low production efficiency.
The content of the invention
Based on this, it is necessary to provide a kind of automaticity it is higher, section time power multilayer cut-parts automatic edge-adjusting mechanism.
A kind of multilayer cut-parts automatic edge-adjusting mechanism, including:
Edge-adjusting device, the edge-adjusting device includes fixed seat, the first location-plate, the second location-plate, the 3rd location-plate, first Blower and the second blower;The fixed seat is used to be located at board;First location-plate, second location-plate with And the 3rd location-plate is linked in sequence in the fixed seat successively, and first location-plate and second location-plate it Between, between second location-plate and the 3rd location-plate be respectively provided with the material passing passage passed through for cut-parts;Described first blows Airduct is connected to first location-plate a towards surface of second location-plate, and first blower is along the cut-parts Extend on mobile route, there are multiple blowholes towards the material passing passage on first blower;Second blowing Pipe is connected to the 3rd location-plate a towards surface of second location-plate, and second blower is moved along the cut-parts Extend on dynamic route, there are multiple blowholes towards the material passing passage on second blower;And
Cut-parts control side device, the cut-parts control side device includes keeper, sensing part and control side member, the positioning Part is located on the work top of the board and positioned at the top of the fixed seat;The sensing part is close to the keeper; The control side member has cloth-dragging wheel and roll drive part;The roll drive part is located on the board and is connected to For driving the cloth-dragging wheel movement, the roll drive part is also electrically connected at the sensing part to the cloth-dragging wheel, When the selvedge that the sensing part detects the cut-parts on the work top deviates the keeper, the roll drive portion Part drive the cloth-dragging wheel be pressed in the cut-parts and drive the cloth-dragging wheel be rotated such that the edge of the cut-parts with it is described Keeper aligns.
Wherein in one embodiment, first location-plate has first to go out towards a surface of second location-plate Wind groove, the both ends of first air-out groove extend respectively to the edge of first location-plate.
Wherein in one embodiment, the 3rd location-plate has second to go out towards a surface of second location-plate Wind groove, the both ends of second air-out groove extend respectively to the edge of the 3rd location-plate.
Wherein in one embodiment, the first location-plate exterior face surface has slot to make way, the groove of the slot to make way Bottom surface has allows bit port, first blower to be fastened in the slot to make way, the blowhole court on first blower To by the bit port towards the corresponding material passing passage that allows.
Wherein in one embodiment, the 3rd location-plate exterior face surface also has slot to make way, the slot to make way Groove bottom also has allows bit port, second blower to be fastened in the slot to make way, the blowing on second blower Hole is directed through the bit port towards the corresponding material passing passage that allows.
Wherein in one embodiment, first location-plate, second location-plate and the 3rd location-plate are equal It is parallel.
Wherein in one embodiment, the sensing part has multiple inductors, and multiple inductors are each provided at institute State on the work top of board, at least two inductors are close to the keeper, at least one described inductor with There is interval between the keeper.
Wherein in one embodiment, the control side member also has multiple rollers, and the diameter of the roller is less than described Cloth-dragging wheel obtains diameter;
Multiple rollers are both connected on the cloth-dragging wheel, and the axle center of multiple rollers is located at the garden of the cloth-dragging wheel In circumferential edges, the sagittal plane of multiple rollers is vertical with the sagittal plane of the cloth-dragging wheel, and the periphery of multiple scroll wheels is equal Protrude from the periphery of the cloth-dragging wheel.
Wherein in one embodiment, multiple rollers are uniformly distributed in the circumferential edge of the cloth-dragging wheel.
Wherein in one embodiment, also including adjusting means, there is the adjusting means adjusting rod and regulation to drive Part;The regulation driver part is located on the board and is connected to the adjusting rod, and the adjusting rod is also attached to described Fixed seat, the regulation driver part can drive the fixed seat to move by driving the adjusting rod to move.
Above-mentioned multilayer cut-parts automatic edge-adjusting mechanism, there is provided cut-parts control side device, cut-parts control side device is in automation car Play a part of to control side in seam, when cut-parts deviate predetermined trajectory, cloth-dragging wheel comes to cause that clockwise or counterclockwise cut-parts are leaned on Near or remotely located side, makes the selvedge of cut-parts be abutted and parallel with positioning side all the time, it is ensured that the quality of sewing.Above-mentioned sanction Piece control side device is also applicable in the clothing automation procedure that other need cut-parts to be automatically positioned.There is provided edge-adjusting device, right Side device includes fixed seat, the first location-plate, the second location-plate, the 3rd location-plate, the first blower and the second blower;The One location-plate, the second location-plate and the 3rd location-plate are linked in sequence in fixed seat successively, and the first location-plate and second is determined Between the plate of position, the material passing passage passed through for cut-parts, two cut-parts difference are respectively provided between the second location-plate and the 3rd location-plate By the way that in two punishments in advance intervals, two material passing passages are used for two spacing and positioning of cut-parts, have saved human assistance two-layer sanction The positioning of piece;First blower is connected to the first location-plate a towards surface of second location-plate, has on the first blower There are multiple blowholes towards material passing passage, the second blower is connected to a surface of the 3rd location-plate towards the second location-plate, There are multiple blowholes towards material passing passage, by the blowing of blowhole so that the sanction in material passing passage on second blower Piece can in real time be close to fixed seat positioning, saved and be positioned manually, and also cause that follow-up sewing efficiency is improved, and sewing quality is obtained To guarantee.The controllable two-layer cut-parts of above-mentioned edge-adjusting device, cloth-dragging wheel controls one layer of cut-parts, multilayer cut-parts automatic edge-adjusting mechanism one Three layers of cut-parts are controlled altogether.Cut-parts control side device and/or opposite side dress can be increased according to the principle if desired for the cut-parts of control more layers Put and be capable of achieving.
Brief description of the drawings
Fig. 1 is an embodiment multi-layer cylinder shape cut-parts opposite side sewing system schematic;
Fig. 2 is the edge-adjusting device schematic diagram of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1;
Schematic diagram when Fig. 3 is removing the first blower and the second blower of edge-adjusting device shown in Fig. 2;
Fig. 4 is that the edge-adjusting device of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1 and cut-parts control side device coordinate Schematic diagram;
Fig. 5 is the cut-parts control side device of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1;
Fig. 6 is that the cylindrical shape cut-parts automatic deviation rectifying mechanism of the multi-layer cylinder shape cut-parts opposite side sewing system shown in Fig. 1 is illustrated Figure.
Description of reference numerals
10th, multi-layer cylinder shape cut-parts opposite side sewing system;100th, board;110th, work top;200th, edge-adjusting device;210、 Fixed seat;220th, the first location-plate;221st, the first air-out groove;222nd, slot to make way;230th, the second location-plate;240th, the 3rd positioning Plate;241st, the second air-out groove;242nd, slot to make way;250th, the first blower;260th, the second blower;270th, material passing passage;300、 Cylindrical shape cut-parts automatic deviation rectifying mechanism;310th, base;320th, conical limit wheel;330th, taper driven pulley;340th, limiting plate;350、 Rotary shaft;360th, rotary driving part;370th, mobile driver part;380th, guide rail;390th, sliding seat;3100th, gag lever post;400、 Feed device;410th, support;420th, feeding arm;430th, telescopic drive part;440th, feeding driver part;450th, drawing-inroller; 460th, transmission belt;470th, driving wheel;500th, cut-parts control side device;510th, keeper;520th, part is sensed;530th, side member is controlled; 531st, cloth-dragging wheel;532nd, roll drive part;533rd, roller;534th, trailing arm;600th, adjusting means;610th, adjusting rod;620th, adjust Section driver part;700th, sewing device;800th, cylinder assisting rotary apparatus;900th, U-frame.
Specific embodiment
For the ease of understanding the present invention, the present invention is described more fully below with reference to relevant drawings.In accompanying drawing Give presently preferred embodiments of the present invention.But, the present invention can be realized in many different forms, however it is not limited to this paper institutes The embodiment of description.On the contrary, the purpose for providing these embodiments is to make the understanding to the disclosure more thorough Comprehensively.
It should be noted that when element is referred to as " being fixed on " another element, it can directly on another element Or can also there is element placed in the middle.When an element is considered as " connection " another element, it can be directly connected to To another element or may be simultaneously present centering elements.
Unless otherwise defined, all of technologies and scientific terms used here by the article with belong to technical field of the invention The implication that technical staff is generally understood that is identical.The term for being used in the description of the invention herein is intended merely to description tool The purpose of the embodiment of body, it is not intended that in the limitation present invention.Term as used herein "and/or" includes one or more phases The arbitrary and all of combination of the Listed Items of pass.
Shown in Figure 1, the present embodiment relate to a kind of multi-layer cylinder shape cut-parts opposite side sewing system 10.The multi-layer cylinder Shape cut-parts opposite side sewing system 10 includes board 100, edge-adjusting device 200, adjusting means 600, cylindrical shape cut-parts automatic correcting machine Structure 300, feed device 400, cut-parts control side device 500, sewing device 700 and control device.Wherein, edge-adjusting device 200, sanction Piece control side device 500 and the three of adjusting means 600 can also be used alone to constitute multilayer cut-parts automatic edge-adjusting mechanism.
Referring to shown in Fig. 2 and Fig. 3, the edge-adjusting device 200 includes that fixed seat 210, the first location-plate 220, second are positioned Plate 230, the 3rd location-plate 240, the first blower 250 and the second blower 260.The fixed seat 210 is located at the board On 100;First location-plate 220, second location-plate 230 and the 3rd location-plate 240 are linked in sequence successively In the fixed seat 210, and between first location-plate 220 and second location-plate 230, second location-plate 230 The material passing passage 270 passed through for cut-parts is respectively provided between the 3rd location-plate 240;First blower 250 is connected In first location-plate 220 a towards surface of second location-plate 230, first blower 250 is along the sanction Extend on piece movement route, there are multiple blowholes towards the material passing passage 270 on first blower 250;It is described Second blower 260 is connected to the 3rd location-plate 240 a towards surface of second location-plate 230, and described second blows Airduct 260 has multiple towards the material passing passage along extending on cut-parts movement route on second blower 260 270 blowhole.
Referring to shown in Fig. 2 and Fig. 3, first location-plate 220 has the towards a surface of second location-plate 230 One air-out groove 221, first air-out groove 221 extends to the edge of first location-plate 220 and first air-out groove 221 Both ends extend respectively to the edge of first location-plate 220.The major axis of first air-out groove 221 blows with described first Airduct 250 is parallel.
Referring to shown in Fig. 2 and Fig. 3, the 3rd location-plate 240 has the towards a surface of second location-plate 230 Two air-out grooves 241, second air-out groove 241 extends to the edge of the 3rd location-plate 240.
The both ends of second air-out groove 241 extend respectively to the edge of the 3rd location-plate 240.Described second goes out The major axis of wind groove 241 is parallel with second blower 260.
Referring to shown in Fig. 2 and Fig. 3, the exterior face surface of the first location-plate 220 has slot to make way 222, the slot to make way 222 groove bottom has allows bit port, first blower 250 to be fastened in the slot to make way 222, first blower Blowhole on 250 is directed through the bit port towards the corresponding material passing passage 270 that allows.
Referring to shown in Fig. 2 and Fig. 3, the exterior face surface of the 3rd location-plate 240 also has slot to make way 242, the resigning The groove bottom of groove 242 also has allows bit port, second blower 260 to be fastened in the slot to make way 242, and described second blows Blowhole on airduct 260 is directed through the bit port towards the corresponding material passing passage 270 that allows.First location-plate 220th, second location-plate 230 and the 3rd location-plate 240 are parallel.
Shown in Figure 4, adjusting means 600 has adjusting rod 610 and regulation driver part 620.The regulation drives Part 620 is located on the board 100 and is connected to the adjusting rod 610, and the adjusting rod 610 is also attached to the fixed seat 210, the regulation driver part 620 can drive the fixed seat 210 to move by driving the adjusting rod 610 to move.
Referring to shown in Fig. 1 and Fig. 6, the cylindrical shape cut-parts automatic deviation rectifying mechanism 300 includes base 310, conical limit wheel 320th, taper driven pulley 330, limiting plate 340, rotary shaft 350, rotary driving part 360, mobile driver part 370, tune code dress Put, guide rail 380, sliding seat 390 and gag lever post 3100.Control device is electrically connected at rotary driving part 360, control device It is electrically connected at mobile driver part 370.
Shown in Figure 6, the mobile driver part 370 is connected to base 310 for driving the base 310 to move It is dynamic.The rotary driving part 360 is located on the base 310 and is connected to the rotary shaft 350 for driving the rotation Rotating shaft 350 is rotated;The limiting plate 340 and the conical limit wheel 320 are set in the rotary shaft 350, the cone Shape position-limited wheel 320 is located at the outside of the rotary shaft 350, and described less one end of the external diameter of conical limit wheel 320 inwardly and is close to The limiting plate 340;The taper driven pulley 330 is also provided on the base 310, the taper driven pulley 330 and the cone The order of shape position-limited wheel 320 is arranged, and described less one end of the external diameter of taper driven pulley 330 is also connected with the limiting plate 340, described Taper driven pulley 330 is used to be arranged cylindrical shape cut-parts with the conical limit wheel 320.
Shown in Figure 6, in the present embodiment, the guide rail 380 is located on the base 310, the rotary driving part Part 360 is slidably connected on the guide rail 380, and the mobile driver part 370 can drive the edge of the rotary driving part 360 The guide rail 380 to slide.The gag lever post 3100 is located on the base 310 and parallel with the guide rail 380, the slip Seat 390 is slidably connected on the guide rail 380, and the sliding seat 390 is also sheathed on the gag lever post 3100, and the rotation is driven Dynamic component 360 is located on the sliding seat 390, and the mobile driver part 370 can drive the sliding seat 390 along described Guide rail 380 is slided.The conical limit wheel 320 and the taper driven pulley 330 are located on same horizontal plane, and the cone The limiting plate 340 at shape position-limited wheel 320 aligns with the limiting plate 340 at the taper driven pulley 330.
Shown in Figure 6, in the present embodiment, the position-arresting disk is in the form of annular discs.The taper driven pulley 330 and the cone Relative position of the shape position-limited wheel 320 on the base 310 is adjustable.The barcode device is located on the base 310, the cone Shape driven pulley 330 is located on the tune code device and can be rotated relative to the tune code device, and the tune code device can be adjusted Save the relative position of the taper driven pulley 330 and the conical limit wheel 320.
Referring to shown in Fig. 1, Fig. 4 and Fig. 5, the cut-parts control side device 500 include keeper 510, sensing part 520 and Control side member 530, the keeper 510 is located on the work top 110 of the board 100 and positioned at the fixed seat 210 Top.The sensing part 520 is close to the keeper 510;It is described control side member 530 have cloth-dragging wheel 531, trailing arm 534 with And roll drive part 532.
Referring to shown in Fig. 4 and Fig. 5, trailing arm 534 is located on board 100 and is connected to roll drive part 532.The rolling Driver part 532 is connected to the cloth-dragging wheel 531 for driving the cloth-dragging wheel 531 to move, the roll drive part 532 The sensing part 520 is also electrically connected at, when the sensing part 520 detects the cut-parts on the work top 110 Selvedge deviate the keeper 510 when, the roll drive part 532 drive the cloth-dragging wheel 531 be pressed in the cut-parts and The cloth-dragging wheel 531 is driven to be rotated such that the edge of the cut-parts aligns with the keeper 510.Control device is electrically connected with In sensing part 520;Control device is electrically connected at roll drive part 532.
Shown in Figure 5, in the present embodiment, the sensing part 520 has multiple inductors, multiple inductors It is each provided on the work top 110 of the board 100, at least two inductors are close to the keeper 510, at least There is interval between one inductor and the keeper 510.Control device is electrically connected at inductor.
Shown in Figure 5, in the present embodiment, the control side member 530 also has multiple rollers 533, the roller 533 Diameter of the diameter less than the cloth-dragging wheel 531, multiple rollers 533 are both connected on the cloth-dragging wheel 531, multiple described The axle center of roller 533 is located in the garden circumferential edges of the cloth-dragging wheel 531, sagittal plane and the mop of multiple rollers 533 The sagittal plane of wheel 531 is vertical, and the periphery of multiple scroll wheels protrudes from the periphery of the cloth-dragging wheel 531.Multiple rollings Wheel 533 is uniformly distributed in the circumferential edge of the cloth-dragging wheel 531.
Shown in Figure 1, the feed device 400 is located on the board 100 for driving the work top 110 On shirt body cut-parts movement.In the present embodiment, the feed device 400 has support 410, feeding arm 420, telescopic drive Part 430, feeding driver part 440 and drawing-inroller 450, the support 410 are located on the board 100, the feeding arm 420 one end is hinged on the support 410, and the drawing-inroller 450 is hinged on the other end of the feeding arm 420;It is described to send Material driver part 440 is used to drive the drawing-inroller 450 to rotate;The telescopic drive part 430 be located on the support 410 and The feeding arm 420 is connected to for driving the feeding arm 420 to be rotated relative to the support 410.The feed device 400 also have conveyer belt and driving wheel 470, and the driving wheel 470 is coaxial with the feeding arm 420 to be articulated with the support 410, the feeding driver part 440 is located on the board 100 and is connected to the driving wheel 470, and the drawing-inroller 450 leads to The transmission belt 460 is crossed to be connected with the driving wheel 470.Control device is electrically connected at the driving of telescopic drive part 430, feeding Part 440.
It is shown in Figure 1, the sewing device 700 be used for sewing from two cut-parts of the material passing passage 270, come from The cylindrical shape cut-parts on the conical limit wheel 320 and the shirt body on the work top 110 from the board 100 are cut out Piece.Control device is electrically connected at sewing device 700.
It is shown in Figure 1, in the present embodiment, it is also provided with cylinder assisting rotary apparatus 800 and U-frame 900, cylinder Assisting rotary apparatus 800 connect U-frame 900, and because shirt body is more long, the cut-parts of shirt body clothing body are by cylinder assisting rotary apparatus during sewing 800 cooperation U-frames 900 are clamped, and during sewing, cylinder assisting rotary apparatus 800 rotate, and drive the rotation of shirt body, reduce sewing resistance. Control device is electrically connected at cylinder assisting rotary apparatus 800.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, when in use, comprises the following steps:
The cut-parts of neck portion namely cylindrical shape cut-parts of sweat shirt are placed on workman the cone of cylindrical shape cut-parts automatic deviation rectifying mechanism 300 On shape position-limited wheel 320 and taper driven pulley 330, cylindrical shape cut-parts are supportted by conical limit wheel 320 and taper driven pulley 330 Open.
Two-layer cut-parts of the neck portion cut-parts of sweat shirt near the front end of sewing device 700 are respectively sleeved in edge-adjusting device 200 In upper and lower two material passing passages 270.
The neck position of shirt body is still the conical limit wheel 320 and cone for being enclosed within cylindrical shape cut-parts automatic deviation rectifying mechanism 300 Cover whole crew neck on shape driven pulley 330, and conical limit wheel 320 by cylindrical shape cut-parts automatic deviation rectifying mechanism 300 and It is strutted on taper driven pulley 330, and the neck portion position of shirt body is placed on work top 110 simultaneously, is dragged by drawing-inroller 450 during motion And aid in correction.
Before the sewing of sewing device 700, conical limit wheel 320 first dallies, and high-ranking military officer and shirt body come to limiting plate 340 automatically Put, now first correction is completed, and sewing device 700 starts sewing.
Subband cloth roller 533 can be moved up and down under the control of cylinder, and clothing can be aided in downwardly against cut-parts and when rolling Car drives cut-parts to roll.
Because shirt body is more long, the cut-parts of shirt body clothing body are clamped by the U-frame of cylinder assisting rotary apparatus during sewing.During sewing, Cylinder assisting rotary apparatus rotate, and drive the rotation of shirt body, reduce sewing resistance.
The correction of whole crew neck and shirt body is mainly rectified a deviation by conical limit wheel 320.
Circular neck and shirt body or bottom etc. are enclosed within the control side circular cone at two ends during sewing, rotary power drives taper Position-limited wheel 320 is rotated, and due to the taper of conical limit wheel 320, one is produced to spacing to cut-parts when conical limit wheel 320 is rotated The power in the direction of plate 340, so with the rotation of conical limit wheel 320, the cut-parts of skew are moved to the direction of limiting plate 340 gradually, Until be limited plate 340 withstanding, positioning is realized.
Conical limit wheel 320 has one domatic for spacing circle, when sewing bilayer cut-parts, double-deck cut-parts in rotary course Easily there is dislocation or there are side's cut-parts to bounce back so that double-deck cut-parts while while do not align or offset.It is domatic plus circle So that being limited by the domatic angle formed and circular cone between of circle when cut-parts dislocation or retraction, now cut-parts are in one The effect of doubling and no longer toward either one slide, allow cut-parts all to keep justified margin during whole sewing.Make sewing effect More preferably.
Conical limit wheel 320 plays overall correction to crew neck and shirt body and acts on, but conical limit wheel during sewing 320 is distant with the sewing machine pin of sewing needle device, also to have cut-parts control side device 500 to carry out to the correction of neck portion layer cloth Coordinate.Neck portion is filled in the upper and lower material passing passage 270 of cut-parts control side device 500 near sewing machine pin position during sewing, cut-parts control side First blower 250 and the second blower 260 of device 500 are dried, blowing out after-blow in material passing passage 270, incited somebody to action The edge of the cut-parts in material passage 270 is positioned, in order to prevent blowing from excessively causing cut-parts in the inside of material passing passage 270 arch Rise, there is provided the first air-out groove 221 and the second air-out groove 241 are for leaking out, excessive wind is discharged, it is ensured that cut-parts are put down It is whole.
Sensing part 520 is used for controlling cut-parts marginal position, cloth-dragging wheel 531 not to be pressed on cut-parts when flat, works as induction part Part 520 senses after cut-parts skew that cloth-dragging wheel 531 receives signal and then pushes and rotate, correction cut-parts position.Cloth-dragging wheel 531 Active bull wheel circumferential edges at be uniformly distributed equipped with roller 533, roller 533 can be rotated along the center of circle of itself.
The surface that cloth-dragging wheel 531 and circumference obtain small roller 533 is smooth, to ensure not triggering cut-parts table during mop The filament in face.The movement during correction of cloth-dragging wheel 531 to cut-parts forward has certain resistance, easily becomes when cut-parts are PANEL KNITTINGs Shape is stretched, and influences sewing effect.So in the circumferential edge of cloth-dragging wheel 531 plus the roller 533 that can be rotated along itself center of circle, cut-parts Cloth-dragging wheel 531 is pushed down and rolled by roller 533 if cut-parts and cloth-dragging wheel 531, the smooth outer surface of roller 533 subtract when mobile Few cloth-dragging wheel 531 and the frictional force of cut-parts so that operated during cut-parts sewing more smoother.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, it is adaptable to the operation of cylindrical shape cut-parts splicing, workman is only Need to by cylindrical shape cut-parts be set on conical limit wheel 320 then can, other contraposition, sewing can voluntarily be completed by machine, mainly Can be used for the cylindrical shape cut-parts piece operations such as rumble neck, upper flat machine sleeve, net pin, wing.Above-mentioned edge-adjusting device 200 can control two-layer Cut-parts, cloth-dragging wheel 531 controls one layer of cut-parts, and multilayer cut-parts automatic edge-adjusting mechanism has three layers of cut-parts of control altogether.If desired for control more It is to be capable of achieving that multilayer cut-parts can increase cut-parts control side device 500 and/or edge-adjusting device 200 according to the principle.There is provided cylinder Shape cut-parts automatic deviation rectifying mechanism 300, conical top has a limiting plate 340, when sewing bilayer cut-parts when, taper driven pulley 330 with Double-deck cut-parts easily occur misplacing or have side's cut-parts to bounce back in the rotary course of conical limit wheel 320 so that double-deck cut-parts While while do not align or offset.It is subject to be formed between circle slope and circular cone when cut-parts is misplaced or is bounced back plus circle slope Angle limitation, now cut-parts are in the effect of doubling and are no longer slided toward either one, allow cut-parts in whole sewing process In all keep justified margin so that follow-up sewing effect is more preferable.
Above-mentioned multi-layer cylinder shape cut-parts opposite side sewing system 10, there is provided cut-parts control side device 500, cut-parts control side device 500 play a part of to control side in sewing is automated, and when cut-parts deviate predetermined trajectory, cloth-dragging wheel 531 is clockwise or counterclockwise Rotate to cause that cut-parts are close to or remotely located side, the selvedge of cut-parts is abutted and parallel with positioning side all the time, it is ensured that car The quality of seam.Above-mentioned cut-parts control side device 500 is also applicable in other clothing automation procedures for needing cut-parts to be automatically positioned In.There is provided edge-adjusting device 200, edge-adjusting device 200 includes fixed seat 210, the first location-plate 220, the second location-plate 230, the Three location-plates 240, the first blower 250 and the second blower 260;First location-plate 220, the second location-plate 230 and Three location-plates 240 are linked in sequence in fixed seat 210 successively, and between the first location-plate 220 and the second location-plate 230, second The material passing passage 270 passed through for cut-parts is respectively provided between the location-plate 240 of location-plate 230 and the 3rd, two cut-parts pass through respectively In two punishment in advance intervals, two material passing passages 270 are used for two spacing and positioning of cut-parts, have saved human assistance two-layer cut-parts Positioning;First blower 250 is connected to the first location-plate 220 a towards surface of second location-plate 230, the first blowing There are multiple blowholes towards material passing passage 270, the second blower 260 is connected to the 3rd location-plate 240 towards the on pipe 250 One surface of two location-plates 230, has multiple blowholes towards material passing passage 270, by blowhole on the second blower 260 Blowing so that the cut-parts in material passing passage 270 can in real time be close to fixed seat 210 and position, and saved and have been positioned manually, and also make The sewing efficiency for obtaining subsequently is improved, and sewing quality is guaranteed.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, the scope of this specification record is all considered to be.
Embodiment described above only expresses several embodiments of the invention, and its description is more specific and detailed, but simultaneously Therefore the limitation to the scope of the claims of the present invention can not be interpreted as.It should be pointed out that for one of ordinary skill in the art For, without departing from the inventive concept of the premise, various modifications and improvements can be made, these belong to guarantor of the invention Shield scope.Therefore, the protection domain of patent of the present invention should be determined by the appended claims.

Claims (10)

1. a kind of multilayer cut-parts automatic edge-adjusting mechanism, it is characterised in that including:
Edge-adjusting device, the edge-adjusting device includes fixed seat, the first location-plate, the second location-plate, the 3rd location-plate, the first blowing Pipe and the second blower;The fixed seat is used to be located at board;First location-plate, second location-plate and institute The 3rd location-plate is stated to be linked in sequence successively in the fixed seat, and between first location-plate and second location-plate, The material passing passage passed through for cut-parts is respectively provided between second location-plate and the 3rd location-plate;First blower First location-plate a towards surface of second location-plate is connected to, first blower is moved along the cut-parts Extend on route, there are multiple blowholes towards the material passing passage on first blower;Second blower connects The 3rd location-plate a towards surface of second location-plate is connected on, second blower moves road along the cut-parts Extend on line, there are multiple blowholes towards the material passing passage on second blower;And
Cut-parts control side device, the cut-parts control side device includes keeper, sensing part and control side member, and the keeper sets On the work top of the board and positioned at the top of the fixed seat;The sensing part is close to the keeper;It is described Control side member has cloth-dragging wheel and roll drive part;The roll drive part is located on the board and is connected to described For driving the cloth-dragging wheel movement, the roll drive part is also electrically connected at the sensing part, works as institute cloth-dragging wheel When stating sensing part and detecting the selvedge of cut-parts on the work top and deviate the keeper, the roll drive part drives The cloth-dragging wheel is moved to be pressed in the cut-parts and drive the cloth-dragging wheel to be rotated such that the edge and the positioning of the cut-parts Part aligns.
2. multilayer cut-parts automatic edge-adjusting mechanism according to claim 1, it is characterised in that first location-plate is towards institute Stating a surface of the second location-plate has the first air-out groove, and the both ends of first air-out groove extend respectively to described first and determine The edge of position plate.
3. multilayer cut-parts automatic edge-adjusting mechanism according to claim 1, it is characterised in that the 3rd location-plate is towards institute Stating a surface of the second location-plate has the second air-out groove, and the both ends of second air-out groove extend respectively to the described 3rd and determine The edge of position plate.
4. multilayer cut-parts automatic edge-adjusting mechanism according to claim 1, it is characterised in that first location-plate is outwardly Surface has slot to make way, and the groove bottom of the slot to make way has allows bit port, first blower to be fastened on the slot to make way Interior, the blowhole on first blower is directed through the bit port towards the corresponding material passing passage that allows.
5. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that the described 3rd determines Position plate exterior face surface also has a slot to make way, and the groove bottom of the slot to make way also has allows bit port, the second blowing pipe clamp It is located in the slot to make way, the blowhole on second blower is directed through the bit port towards the corresponding mistake that allows Material passage.
6. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that described first determines Position plate, second location-plate and the 3rd location-plate are parallel.
7. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that the induction part Part has multiple inductors, and multiple inductors are each provided on the work top of the board, at least two sensings Device is close to the keeper, has interval between at least one described inductor and the keeper.
8. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that the control edge Part also has multiple rollers, and the diameter of the roller obtains diameter less than the cloth-dragging wheel;
Multiple rollers are both connected on the cloth-dragging wheel, and the axle center of multiple rollers is located at the garden periphery of the cloth-dragging wheel On edge, the sagittal plane of multiple rollers is vertical with the sagittal plane of the cloth-dragging wheel, and the periphery of multiple scroll wheels is protruded In the periphery of the cloth-dragging wheel.
9. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that multiple rollings Wheel is uniformly distributed in the circumferential edge of the cloth-dragging wheel.
10. the multilayer cut-parts automatic edge-adjusting mechanism according to claim 1-4 any one, it is characterised in that also including adjusting Regulating device, the adjusting means has adjusting rod and regulation driver part;The regulation driver part is located on the board And the adjusting rod is connected to, the adjusting rod is also attached to the fixed seat, and the regulation driver part can be by driving The adjusting rod moves to drive the fixed seat to move.
CN201710087183.9A 2017-02-17 2017-02-17 Automatic edge aligning mechanism for multi-layer cut pieces Active CN106757833B (en)

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