CN206997511U - A kind of mould structure for punching press dividing plate - Google Patents
A kind of mould structure for punching press dividing plate Download PDFInfo
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- CN206997511U CN206997511U CN201720681178.6U CN201720681178U CN206997511U CN 206997511 U CN206997511 U CN 206997511U CN 201720681178 U CN201720681178 U CN 201720681178U CN 206997511 U CN206997511 U CN 206997511U
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- drift
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- punching press
- bolster
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Abstract
The utility model belongs to field of machining,More particularly, to a kind of mould structure for punching press dividing plate,Including drift,Upper bolster,Upper padding plate,Train wheel bridge,Lower template,Lower bolster,Die shoe,Semishearing drift,Blanking die and material-dropping hole,Face is set up and down for the upper bolster and die shoe,The lower section of wherein upper bolster is sequentially connected upper padding plate and train wheel bridge by screw,The top of die shoe is sequentially connected lower bolster and lower template by screw,The bottom of the lower plate is fixedly connected with the drift being vertically arranged,Semishearing drift and blanking die,Drift,While traditional single die is changed into the progressive die by semishearing drift and blanking die from feed end in one line practicality of discharge end,Increase a semishearing process before product is fallen,One-off can carry out three process,It ensure that the flatness of product,Also improve production efficiency,Comprehensive Improving The Quality of Products.
Description
Technical field
The utility model belongs to field of machining, more particularly, to a kind of mould structure for punching press dividing plate.
Background technology
Punching press is that depended on pressure machine and mould apply external force to sheet material, band, tubing and section bar etc., is allowed to produce plastic deformation
Or separation, so as to obtain the forming and machining method of the workpiece of required shape and size.Existing pressing equipment can only once be carried out
One technique punching press, i.e., can only the single shape of punching press or structure, cause production efficiency low.
Utility model content
The purpose of this utility model is in view of the above-mentioned problems, providing a kind of mould structure for punching press dividing plate.
To reach above-mentioned purpose, the utility model employs following technical proposal:For the mould structure of punching press dividing plate, bag
Include drift, upper bolster, upper padding plate, train wheel bridge, lower template, lower bolster, die shoe, semishearing drift, blanking die and material-dropping hole, institute
Stating upper bolster and die shoe, face is set up and down, and the lower section of wherein upper bolster is sequentially connected upper padding plate and train wheel bridge by screw,
The top of die shoe is sequentially connected lower bolster and lower template by screw, and the bottom of the train wheel bridge is fixedly connected with what is be vertically arranged
Drift, semishearing drift and blanking die, drift, semishearing drift and blanking die are in one line from feed end to discharge end, described
The lower mold assemblies that lower template, lower bolster and lower template are formed, the upper membrane module that upper bolster, upper padding plate and train wheel bridge are formed are described
Lower mold assemblies position corresponding with blanking die offers material-dropping hole.
In the above-mentioned mould structure for punching press dividing plate, pressing equipment is fixedly connected at the top of the upper bolster
Output end, die shoe are connected on the workbench of pressing equipment.
In the above-mentioned mould structure for punching press dividing plate, opened up vertically in the upper membrane module multiple for installation etc.
The step through-hole of high sleeve, step through-hole is the through hole that epimere aperture is more than hypomere aperture, in order to be turned at the top of contour sleeve
While riding on the step inside step through-hole, the top port of the step through-hole is threaded with set screw, set screw
Spring A is set between contour sleeve.
In the above-mentioned mould structure for punching press dividing plate, the bottom of the contour sleeve sets gradually downwards baffle plate
And stripper, the bottom thread of contour sleeve are connected with lock-screw, baffle plate and stripper are pressed on upper folder by lock-screw
The bottom of plate, multiple through holes coaxial with contour sleeve, wherein baffle plate and stripper are offered on the baffle plate and stripper
It is fastenedly connected by screw.
In the above-mentioned mould structure for punching press dividing plate, multiple buoyance lifts dual-purpose pin is installed on the lower mold assemblies, floated
Rise and open up multiple corresponding guide holes on stripper corresponding to dual-purpose pin.
In the above-mentioned mould structure for punching press dividing plate, lower mold assemblies position corresponding with semishearing drift opens up
Through hole, is provided with sliding bar in through hole, and the bottom thread of through hole is connected with set screw, sliding bar and corresponding set screw it
Between spring B is set, and support block is provided with above sliding bar.
Compared with prior art, the advantages of being originally used for the mould structure of punching press dividing plate is:By from feed end to going out
Expect end drift, semishearing drift and blanking die in one line, realize the continuous surface texture punching press of special dividing plate and blanking, this
While traditional single die is changed into the progressive die by practicality, increase a semishearing process before product is fallen, one-off can enter
Row three process, the flatness of product is ensure that, also improve production efficiency, comprehensive Improving The Quality of Products.
Brief description of the drawings
Fig. 1 is the structural representation for the mould structure of punching press dividing plate.
In figure, the dual-purpose pin 5 of set screw 1, spring A2, contour sleeve 3, drift 4, buoyance lift, upper bolster 6, upper padding plate 7, on
Clamping plate 8, baffle plate 9, stripper 10, lower template 11, lower bolster 12, die shoe 13, semishearing drift 14, blanking die 15, blanking
Hole 16, spring B 17, sliding bar 18, support block 19.
Embodiment
Following examples only exist in illustrative purpose, without being intended to limit the scope of the utility model.
Embodiment
As shown in figure 1, this is used for the mould structure of punching press dividing plate, including set screw 1, spring A2, contour sleeve 3, punching
First 4, the dual-purpose pin 5 of buoyance lift, upper bolster 6, upper padding plate 7, train wheel bridge 8, baffle plate 9, stripper 10, lower template 11, lower bolster 12, under
Die holder 13, semishearing drift 14, blanking die 15, material-dropping hole 16, spring B 17, sliding bar 18 and support block 19, the upper bolster 6
With die shoe face setting about 13, in actual use, the top of upper bolster 6 is fixedly connected on the output of pressing equipment
End, die shoe are connected on the workbench of pressing equipment, and to realize reciprocal press work, the lower section of wherein upper bolster 6 passes through spiral shell
Nail is sequentially connected upper padding plate 7 and train wheel bridge 8, and the top of die shoe 13 is sequentially connected lower bolster 12 and lower template 11 by screw.
The bottom of the train wheel bridge 8 is fixedly connected with the drift 4 being vertically arranged, semishearing drift 14 and blanking die 15, drift
4th, semishearing drift 14 and blanking die 15 are in one line from feed end to discharge end, i.e., realize dividing plate correspondence position by drift 4
The punching press of special shape, the semishearing punching press of correspondence position is then realized using semishearing drift 14, will finally be contained with blanking die 15
The product punching for having special shape falls.
Opened up vertically in the upper membrane module that the upper bolster 6, upper padding plate 7 and train wheel bridge 8 are formed multiple contour for installing
The step through-hole of sleeve 3, step through-hole is the through hole that epimere aperture is more than hypomere aperture, in order to which the top of contour sleeve 3 is turned over
While riding on the step inside step through-hole, the top port of the step through-hole is threaded with set screw 1, set screw
Spring A2 is set between 1 and contour sleeve 3.
The bottom of the contour sleeve 3 sets gradually downwards baffle plate 9 and stripper 10, the bottom thread of contour sleeve 3
Lock-screw is connected with, baffle plate 9 and stripper 10 are pressed on the bottom of train wheel bridge 8 by lock-screw, the baffle plate 9 and unload
Multiple through holes coaxial with contour sleeve 3 are offered on flitch 10, in order to passing through for clamping screw, wherein baffle plate 9 and are unloaded
Flitch 10 is fastenedly connected by screw.
The dual-purpose pin 5 of multiple buoyance lifts is installed on the lower mold assemblies that the lower template 11, lower bolster 12 and lower template 11 are formed, floated
Rise and open up multiple corresponding guide holes on stripper 10 corresponding to dual-purpose pin 5.
Further, the lower mold assemblies open up through hole with 14 corresponding position of semishearing drift, and sliding bar is provided with through hole
18, the bottom thread of through hole is connected with set screw 1, and spring B 17 is set between sliding bar 18 and corresponding set screw 1, and
The top of sliding bar 18 is provided with support block 19, and the height of support block 19 can be adjusted by rotating set screw 1, is rushed for semishearing
Pressure provides surplus, also functions to the effect of damping.
The lower mold assemblies offer material-dropping hole 16 with 15 corresponding position of blanking die, the discharge for waste material.
Although more used herein the dual-purpose pin 5 of set screw 1, spring A2, contour sleeve 3, drift 4, buoyance lift, on
Die holder 6, upper padding plate 7, train wheel bridge 8, baffle plate 9, stripper 10, lower template 11, lower bolster 12, die shoe 13, semishearing drift 14,
The terms such as blanking die 15, material-dropping hole 16, spring B 17, sliding bar 18, support block 19, but be not precluded from using other terms
Possibility.It is used for the purpose of more easily describing and explaining essence of the present utility model using these terms;It is construed as
The additional limitation of any one is all disagreed with the utility model spirit.
Claims (6)
1. a kind of mould structure for punching press dividing plate, including drift (4), upper bolster (6), upper padding plate (7), train wheel bridge (8), under
Template (11), lower bolster (12), die shoe (13), semishearing drift (14), blanking die (15) and material-dropping hole (16), the upper mould
Seat (6) and die shoe (13) up and down face setting, wherein the lower section of upper bolster (6) by screw be sequentially connected upper padding plate (7) and
Train wheel bridge (8), the top of die shoe (13) are sequentially connected lower bolster (12) and lower template (11), the lower template by screw
(11), the lower mold assemblies that lower bolster (12) and lower template (11) are formed, upper bolster (6), upper padding plate (7) and train wheel bridge (8) are formed
Upper membrane module, it is characterised in that the bottom of the train wheel bridge (8) is fixedly connected with drift (4), the semishearing drift being vertically arranged
(14) arranged with blanking die (15), drift (4), semishearing drift (14) and blanking die (15) from feed end to the word of discharge end one
Open, lower mold assemblies position corresponding with blanking die (15) offers material-dropping hole (16).
2. the mould structure according to claim 1 for punching press dividing plate, it is characterised in that the top of the upper bolster (6)
Portion is fixedly connected on the output end of pressing equipment, and die shoe is connected on the workbench of pressing equipment.
3. the mould structure according to claim 1 for punching press dividing plate, it is characterised in that vertical in the upper membrane module
Multiple step through-holes for being used to install contour sleeve (3) are opened up, step through-hole is the through hole that epimere aperture is more than hypomere aperture, with
It is easy to the top flange of contour sleeve (3) to ride on the step inside step through-hole, the top port screw thread of the step through-hole
Set screw (1) is connected with, spring A (2) is set between set screw (1) and contour sleeve (3).
4. the mould structure according to claim 3 for punching press dividing plate, it is characterised in that the contour sleeve (3)
Bottom sets gradually downwards baffle plate (9) and stripper (10), and the bottom thread of contour sleeve (3) is connected with lock-screw, lock
Baffle plate (9) and stripper (10) are pressed on the bottom of train wheel bridge (8) by tight screw, on the baffle plate (9) and stripper (10)
Multiple through holes coaxial with contour sleeve (3) are offered, wherein baffle plate (9) and stripper (10) is fastenedly connected by screw.
5. the mould structure according to claim 1 for punching press dividing plate, it is characterised in that installed on the lower mold assemblies
Multiple dual-purpose pins of buoyance lift (5), open up multiple corresponding guide holes on stripper (10) corresponding to the dual-purpose pin of buoyance lift (5).
6. the mould structure according to claim 5 for punching press dividing plate, it is characterised in that the lower mold assemblies and semishearing
Position corresponding to drift (14) opens up through hole, and sliding bar (18) is provided with through hole, and the bottom thread of through hole, which is connected with, stops payment spiral shell
Silk (1), spring B (17) is set between sliding bar (18) and corresponding set screw (1), and is provided with above sliding bar (18)
Support block (19).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720681178.6U CN206997511U (en) | 2017-06-13 | 2017-06-13 | A kind of mould structure for punching press dividing plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720681178.6U CN206997511U (en) | 2017-06-13 | 2017-06-13 | A kind of mould structure for punching press dividing plate |
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CN206997511U true CN206997511U (en) | 2018-02-13 |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109226445A (en) * | 2018-09-12 | 2019-01-18 | 广东天倬智能装备科技有限公司 | Cut waste material stamping die and its application method |
CN109570344A (en) * | 2018-11-30 | 2019-04-05 | 东莞市斯浦昊模具有限公司 | A kind of complete cycle flange progressive die production technology |
-
2017
- 2017-06-13 CN CN201720681178.6U patent/CN206997511U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109226445A (en) * | 2018-09-12 | 2019-01-18 | 广东天倬智能装备科技有限公司 | Cut waste material stamping die and its application method |
CN109226445B (en) * | 2018-09-12 | 2023-11-07 | 广东天倬智能装备科技有限公司 | Scrap cutting stamping die and using method thereof |
CN109570344A (en) * | 2018-11-30 | 2019-04-05 | 东莞市斯浦昊模具有限公司 | A kind of complete cycle flange progressive die production technology |
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