KR20150024962A - Apparatus for removing an unnecessary portion - Google Patents
Apparatus for removing an unnecessary portion Download PDFInfo
- Publication number
- KR20150024962A KR20150024962A KR20130101526A KR20130101526A KR20150024962A KR 20150024962 A KR20150024962 A KR 20150024962A KR 20130101526 A KR20130101526 A KR 20130101526A KR 20130101526 A KR20130101526 A KR 20130101526A KR 20150024962 A KR20150024962 A KR 20150024962A
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- moving
- plate
- movement
- forth
- guide groove
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Abstract
The present invention relates to an insoluble material removing device, which is capable of easily and precisely removing insolubles of an object such as a main product without using an expensive CNC lathe, It is possible to remove the insolubles of the processed products such as the main products of various shapes other than the product, and the utilization as general-purpose equipment is very excellent.
Description
The present invention can easily and accurately remove insolubles of objects such as main products without using an expensive CNC lathe or the like, Which can be used as a general-purpose machine.
In general, a disk-shaped casting product exists in a wide range in automobile parts, mechanical parts, and the like, and almost all of the products commonly require cutting of insoluble materials.
Examples of typical disc-shaped casting products include automotive wheels and brake-related parts. Discontinuities in the disc-shaped casting products are often different depending on the case, but are often accompanied by top-side machining and side machining.
In recent years, in order to remove insolubles, which means unnecessary parts such as sprue, blanket, and burr formed integrally with the disc-shaped casting product during the manufacturing process of the disc-shaped casting product, inevitably, I will use a shelf.
However, since the CNC lathe is distributed at a high price in the market, there is a problem that it is inconvenient for an operator to purchase and use the CNC lathe.
The present invention has been made in order to solve the above-mentioned problems, and it is an object of the present invention to provide an apparatus and a method for removing insolubles of an object such as a main object more easily without using an expensive CNC lathe, And it is an object of the present invention to provide an insoluble material removing device which is capable of removing insolubles of processed products such as main products of various shapes other than the disc-shaped main product, and which is highly utilizable as general-purpose equipment.
According to an aspect of the present invention, A forward / backward moving member provided on the upper portion of the frame so as to be movable back and forth; A left and right moving member movably provided on an upper portion of the back and forth moving member and having an upper portion to which an object to be removed is fixed; An up and down moving member provided so as to be movable up and down in the upper direction of the left and right moving member; And a spindle portion provided on the upper and lower movable members to move up and down along the upper and lower movable members and to remove insolubles of the object in a state in which the front and rear movable members and the left and right movable members are adjusted in the longitudinal, And an insoluble material removing device.
Here, the back and forth moving member may include a front and rear moving lead screw provided on the upper portion of the frame and horizontally and horizontally extending from the front side of the frame to the rear side of the frame; A front-rear movement driving member for rotating the front-rear movement lead screw; And a front and rear moving plate in which the front and rear moving lead screws are threadedly coupled to the lower portion so as to be able to move back and forth along the forward and backward moving guide rails provided on the upper surface of the frame by the forward and backward moving lead screws rotated by the forward and backward moving members, And the like.
The left and right moving member includes a guide body provided on an upper front side of the back and forth movable member and an upper rear side of the back and forth moving member, respectively; A fixing body provided on an upper portion of the back and forth movable member so as to be positioned between the guide bodies; A left and right guide rail coupled to the guide body so as to be movable left and right; A left and right moving plate having the left and right moving guide rails provided on a front side of a lower surface and a rear side of a lower surface thereof and moving left and right together with the left and right moving guide rails, A left and right moving lead screw rotating in a state screwed to the fixed body and moving left and right together with the left and right moving guide rails and the left and right moving plates; And a left and right movement driving member for rotating the left and right movement lead screws.
The upper and lower movable members may include a support body vertically disposed on an upper rear side of the frame opposite to an upper front side of the frame; Up and down guide rails vertically provided on one side of the front side of the support body and on the other side of the front side of the support body; An upper and lower copper plate coupled to one side of the rear side and the other side of the rear side of the guide rail so as to be movable up and down along the guide rail; A lead screw for vertically moving the upper and lower copper plates together with the spindle portion in a vertical state while being screwed with the rear surface of the upper copper plate so as to be positioned between the up and down guide rails, ; And a vertical movement driving member for rotating the vertical movement lead screw.
Furthermore, it is preferable that a derailment limit sensor for preventing the back and forth moving plate moving back and forth along the back and forth moving guide rails from being deviated from the back and forth moving guide rails is provided to the back and forth moving guide rails.
In addition, it is preferable that a derailment limit sensor for preventing the left and right movement guide rails, which are coupled to the guide body of the left and right movable member so as to be laterally movable, is prevented from being deviated from the guide body.
In addition, it is preferable that a derailment limit sensor is provided to prevent the upward and downward movement of the upward and downward movement guide rail along the up and down movement guide rail from being deviated from the up and down movement guide rail.
It is preferable that an origin detecting limit sensor for confirming the origin position of the back and forth moving plate moving back and forth along the back and forth moving guide rail is provided on the back and forth moving guide rail.
It is preferable that an origin detecting limit sensor for confirming the origin position of the left and right moving plates moving left and right with the left and right moving guide rails of the left and right moving member is provided.
It is preferable that an origin detecting limit sensor for confirming the origin position of the upper copper plate moving up and down along the up-and-down moving guide rail is provided on the up-and-down moving guide rail.
It is preferable that a fixing member for fixing an object to be removed with insolubles is provided on the upper portion of the left and right movable member.
A guide groove extending from the one side of the left and right shifting members to the other side of the left and right shifting members is provided on the upper surface of the left and right shifting member at a predetermined interval from the front side of the right and left shifting members to the rear side of the right and left shifting members An upper guide groove formed at a predetermined depth in the left and right direction from the one side of the left and right moving member to the other side direction of the left and right moving member; And a lower guide groove formed in the lower portion of the upper guide groove so as to extend in the left and right direction at a predetermined depth along the upper guide groove so as to communicate with the upper guide groove, the width of which is larger than the longitudinal width of the upper guide groove, Wherein the fixing member comprises: an intermediate plate; An upper plate horizontally extending from the upper portion of the intermediate plate toward the upper side of the object and horizontally mounted on the upper portion of the object; A lower plate horizontally extending from a lower portion of the intermediate plate to a lower outer side of the intermediate plate and horizontally seated on an upper portion of the left and right shifting member; A bolt member accommodated in the upper guide groove and the lower guide groove, respectively, while being vertically penetrated through the lower plate; And a nut member accommodated in the lower guide groove in a state of being screwed with a lower side of the bolt member.
The present invention can more easily and precisely remove the insoluble matter of a subject such as a main product, which is adjusted in the longitudinal and lateral directions by the front and rear moving member and the left and right movable member, by using the spindle unit, It is possible to remove the insolubles of the processed products such as the main products of various shapes other than the disk shape, and it is possible to remove the insolubles of the objects, It has very good effect.
1 is a perspective view schematically showing an insoluble material removing apparatus according to an embodiment of the present invention,
Fig. 2 is a right side view of Fig. 1,
Fig. 3 is a left side view of Fig. 1,
4 is a partially enlarged right side view schematically showing the back and forth movable member,
5 is a partially enlarged front view schematically showing the left and right movable member,
6 is a right side view schematically showing the upper and lower movable members,
Figs. 7 and 8 are sectional views taken along the line A-A in Fig.
Hereinafter, preferred embodiments of the present invention will be described in more detail with reference to the accompanying drawings. It is to be understood that the scope of the present invention is not limited to the following embodiments, and various modifications may be made by those skilled in the art without departing from the technical scope of the present invention.
FIG. 1 is a perspective view schematically showing an insoluble material removing apparatus according to an embodiment of the present invention, FIG. 2 is a right side view of FIG. 1, and FIG. 3 is a left side view of FIG.
1 to 3, the insoluble material removing apparatus according to an embodiment of the present invention includes a
First, a
A
A
Rearward
The back and forth
Next, the left and right
An object to be removed (31 in FIG. 7) (3 in FIG. 7) to be insoluble (31 in FIG. 7) may be fixed to the upper part of the left and right
The
Meanwhile, the
Next, the upper and lower movable members (40) are vertically movable in the upper direction of the left and right movable member (30).
Next, the
The
The
The tool that is replaceably mounted on the lower side of the
The milling spindle capable of forming the
4 is a partially enlarged right side view schematically showing the back and forth
4, the back-and-forth moving
The front and rear moving
The front and rear
The front and rear
The driving shaft of the driving motor constituting the
The rear side of the front and rear moving
The front and rear moving
A front and rear moving
The front and rear moving
5 is a partially enlarged front view schematically showing the left-right shifting
5, the left and right
The
The fixed
The left and right
The left and
The left and right moving
The left and right moving
The
The left and right moving
A
The left and right moving
An intermediate portion of the left and right lead screws 350 may be screwed to the fixed
The other side of the left and right moving
The left and right
The left and right
The driving shaft of the driving motor constituting the left and right
The left and right
Fig. 6 is a right side view schematically showing the upper and lower
6, the upper and lower
The
1 and 6, the
The
The one
The upper and
A
The
A vertically moving
A
The
A
The
The one
The
The driving
The driving
The
The entire
The
The front side of the hoisting
The forward and reverse rotational force of the rear
The
The up-and-down moving
The upper and lower movable lead screws 440 are rotated in the forward and reverse directions while being screwed to the up and down moving
The vertical
The up and down
The driving shaft of the driving motor constituting the up-and-down moving driving
Next, as shown in Figs. 3 and 5, a
3, the
The forward and backward
The control unit (not shown) controls the forward / backward
As shown in FIG. 5, the
An
The left and right
Under the control of the control unit (not shown), the left and right
3, the derailment-
The up and down
Under the control of the control unit (not shown), the up-and-down
Next, as shown in FIGS. 3 and 5, the
More specifically, although not shown in the drawing, for example, the control unit (not shown) may be provided with an operation switch in various ways such as a push button method or a dial button method.
Although not shown in the drawing, the control unit (not shown) may be provided with the front and rear moving
As shown in FIG. 3, the
The origin detecting
3, the
First, when the operator operates the operation switch to the ON state, in order to allow the first and second moving
The control unit (not shown) controls the forward /
The left and right movement lead screws 350 and the left and right
The
The origin
When the front and rear moving
The control unit (not shown) controls the front and rear
(Not shown) so that the left and right movement lead screws 350 and the left and right
The up-and-down
Figs. 7 and 8 are sectional views taken along the line A-A in Fig.
Next, the upper surface of the left and right moving
1 and 7, on the upper surface of the left and right moving
The
The
The
The front and rear widths from the front side of the
The fixing
The fixing
The
The
The
The
The
The upper and lower widths of the
When the operator rotates the
The worker rotates the
8, the fixing
The milling
The milling
The
The present invention constructed as described above is characterized in that the
10; Frame, 20; Backward moving member,
30; A left-right moving member, 40; Shanghai East Material,
50; Spindle part.
Claims (12)
A forward / backward moving member (20) movably provided on an upper portion of the frame (10);
A left and right moving member 30 movably provided on an upper portion of the front and rear movable member 20 and having an object 3 to be removed with an insoluble object 31 thereon;
An upper and lower movable member (40) vertically movable in an upper direction of the left and right movable member (30);
The upper and lower movable members 20 and the left and right movable members 30 are moved up and down along the upper and lower movable members 40 to move the upper and lower movable members 20, And a spindle part (50) for removing the insoluble matter (31) of the insoluble matter (3).
The front and rear moving member 20 includes a front and rear moving lead screw 210 which is provided on the upper side of the frame 10 and horizontally horizontally in the rear direction of the frame 10 from the front side of the frame 10;
A forward / backward movement driving member (220) for rotating the front / rear movement leadscrew (210);
Rearward movement lead screw 210 which is rotated by the front-rear movement driving member 220 so as to be movable back and forth along the front-rear movement guide rail 110 provided on the upper surface of the frame 10, And a back-and-forth moving plate (230) to which the screw (210) is screwed to the lower portion.
The left and right moving member 30 includes a guide body 310 provided on the upper front side of the back and forth movable member 20 and the upper rear side of the back and forth movable member 20;
A fixing body 320 provided at an upper portion of the back and forth movable member 20 to be positioned between the guide bodies 310;
A left and right guide rail 330 coupled to the guide body 310 so as to be movable left and right;
The left and right movement guide rails 330 are provided on the front side of the lower side and the rear side of the lower side and are moved left and right together with the left and right movement guide rails 330, )and;
A left and right moving lead screw 350 which is screwed to the fixed body 320 and moves left and right together with the left and right movement guide rails 330 and the left and right movement plates 340;
(360) for rotating the left and right moving lead screws (350).
The upper and lower movable member 40 includes a support body 410 vertically provided on an upper rear side of the frame 10 opposite to an upper front side of the frame 10;
A vertical guide rail 420 vertically installed on one side of a front surface of the support body 410 and the other side of a front surface of the support body 410;
The upper and lower movable guide rails 420 are respectively coupled to one side of the rear side and the other side of the rear side so as to be movable up and down along the up and down movement guide rail 420 and the upper and lower movable plates 430, and;
Is rotatably supported on the front side of the support body 410 so as to be positioned between the up and down movement guide rails 420 in a state of being screwed with the rear surface of the upper and lower copper plates 430 and is coupled with the spindle part 50 Up and down lead screws 440 for moving the upper copper plate 430 up and down;
And a vertically moving driving member (450) for rotating the vertically moving lead screw (440).
A derailment limit sensor (not shown) for preventing the forward / backward movement plate 230, which moves back and forth along the forward / backward movement guide rail 110, from being deviated from the back / forth movement guide rail 110, 60).
A derailment limit sensor 60 for preventing the left and right movement guide rails 330 coupled to the guide body 310 of the left and right movable member 30 from being deviated from the guide body 310, Wherein the insoluble material removing device comprises:
A derailment limit sensor (60) for preventing derailment of the upper copper plate (430) moving up and down along the up and down guide rail (420) in the up and down movement guide rail (420) Wherein the insoluble matter removing device comprises:
An origin detecting limit sensor 70 for confirming the origin position of the back and forth moving plate 230 moving back and forth along the back and forth moving guide rail 110 is provided on the back and forth moving guide rail 110. [ Insoluble material removal device.
And an origin detecting limit sensor (70) for confirming the origin position of the left and right moving plates (340) moving left and right with the left and right moving guide rails (330) of the left and right moving member (30) Water removal device.
And an origin detecting limit sensor (70) for confirming the origin position of the upper copper plate (430) moving up and down along the vertical guide rail (420) is provided on the vertical guide rail (420) Insoluble water removal device.
Characterized in that a fixing member (80) for fixing the object (3) to remove the insoluble material (31) is provided on the upper part of the left and right movable member (30).
A guide groove 90 extending from the one side of the left and right movable member 30 to the other side of the left and right movable member 30 is formed on the upper surface of the left and right movable member 30, A plurality of left and right moving members 30 are provided at predetermined intervals in the rear direction of the left and right moving members 30,
The guide groove 90 includes an upper guide groove 910 extending from one side of the left and right movable member 30 to the other side of the left and right movable member 30 to a predetermined depth;
The upper guide groove 910 is formed at a lower portion of the upper guide groove 910 so as to communicate with the upper guide groove 910. The front and rear widths of the upper guide groove 910 extend in the longitudinal direction of the upper guide groove 910, And a lower guide groove 920 formed to be larger than the lower guide groove 920,
The fixing member 80 includes an intermediate plate 810;
An upper plate 820 horizontally extending from the upper portion of the intermediate plate 810 toward the upper side of the object 3 and horizontally mounted on the upper portion of the object 3;
A lower plate 830 horizontally extending from the lower portion of the intermediate plate 810 to a lower outer side of the intermediate plate 810 and horizontally mounted on the upper portion of the left and right shifting member 30;
A bolt member 840 accommodated in the upper guide groove 910 and the lower guide groove 920, respectively, while vertically penetrating the lower plate 820;
And a nut member (850) accommodated in the lower guide groove (920) in a state of being screwed with a lower side of the bolt member (840).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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KR1020130101526A KR101528673B1 (en) | 2013-08-27 | 2013-08-27 | Apparatus for removing an unnecessary portion |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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KR1020130101526A KR101528673B1 (en) | 2013-08-27 | 2013-08-27 | Apparatus for removing an unnecessary portion |
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KR20150024962A true KR20150024962A (en) | 2015-03-10 |
KR101528673B1 KR101528673B1 (en) | 2015-06-15 |
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KR1020130101526A KR101528673B1 (en) | 2013-08-27 | 2013-08-27 | Apparatus for removing an unnecessary portion |
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JP3884884B2 (en) * | 1999-06-22 | 2007-02-21 | 東芝機械株式会社 | In-corner cutting method and cutting tool |
KR100956951B1 (en) * | 2002-12-28 | 2010-05-12 | 주식회사 포스코 | Apparatus for repairing cross transfer car derailed |
KR100809912B1 (en) * | 2006-07-27 | 2008-03-04 | 한재형 | Robot system for three-dimensional press and the conveyance method of press materials by its system |
KR100864854B1 (en) * | 2007-11-14 | 2008-10-23 | 주식회사 아이씨엠씨 | The pipe cutting system which becomes two dimension bendings |
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