CN203610468U - Automatic stamping die device - Google Patents

Automatic stamping die device Download PDF

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Publication number
CN203610468U
CN203610468U CN201320727980.6U CN201320727980U CN203610468U CN 203610468 U CN203610468 U CN 203610468U CN 201320727980 U CN201320727980 U CN 201320727980U CN 203610468 U CN203610468 U CN 203610468U
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CN
China
Prior art keywords
automatic stamping
stamping device
product
die
die block
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Expired - Lifetime
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CN201320727980.6U
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Chinese (zh)
Inventor
朱敬伟
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WAFFER PRECISION METALLIC TECHNOLOGIES(CHANGSHU)CO Ltd
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WAFFER PRECISION METALLIC TECHNOLOGIES(CHANGSHU)CO Ltd
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Priority to CN201320727980.6U priority Critical patent/CN203610468U/en
Application granted granted Critical
Publication of CN203610468U publication Critical patent/CN203610468U/en
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Abstract

The invention discloses an automatic stamping die device, comprising an upper die block, a lower die block, a material push structure, a side material stop structure and a start switch, wherein the upper die block is provided with a punching structure; a product is placed on the lower die block; a side punching structure is arranged on one side of the lower die block; a rail groove is formed in one side of the lower die block; the product is placed in the rail groove; the material push structure is arranged on one end, far away from the lower die block, of the rail groove; the side material stop structure is arranged on one side edge of the lower die block; when a push rod of the side material stop structure stretches out, the push rod is correspondingly abutted against the position where the product is placed during punching; the lower die block is provided with a lower material jacking structure which is abutted against the hollow part of the lower surface of the product during punching; the start switch is a foot switch. As twice punching at the front face and the side face are continuously completed by the device, the efficiency is higher; after the product is placed in the rail groove, manual placement is not needed, labor is saved and the safety is better.

Description

Automatic stamping device
[technical field]
The utility model relates to a kind of die set, particularly relates to a kind of automatic stamping device.
[background technology]
Refer to Fig. 1, Fig. 1 illustrates the structural representation into a kind of product.The outer ring 11 of this product 10 has burr, and three surface holes 12, a side opening 13 that product 10 has all have burr in hole.Therefore need by die-cut, these burr to be removed.
Prior art be in the hole of the burr of the outer ring of product 10 11 and three surface holes 12 burr carry out as first step die-cut, and for side opening 13 due to not on a plane, therefore carry out die-cut as second step.The operating type of prior art is as follows: for first step, be to be placed on the lower module of punch die manual product 10, operating personnel are Manual press start button again, starts hydraulic press, die-cut described outer ring 11 and described surface holes 12, take out described product 10 with hand after die-cut completing again; For described second step, be the product 10 after first step is die-cut, be placed on the lower module of punch die by hand, operating personnel are Manual press start button again, starts hydraulic press, and die-cut described side opening 13, takes out described product 10 with hand after die-cut completing again.
Visible, adopt aforesaid way and corresponding punch die to carry out when die-cut, thering is following shortcoming: 1, on a face, do not need die-cut part for product 10, carry out at twice die-cut, process trouble; 2, die-cut for twice of product 10, its lay pickup be all adopt manual, troublesome poeration; If 3, not maintenance or electronic devices and components short circuit in time of hydraulic press, easily causes oil hydraulic cylinder to come off, or pressing plate malcompression upper module, easily cause upper module to come off, lay pickup by hand and adopt, easily cause personnel's industrial injury event; 4, Manual press button, long working, easily causes personnel's fatigue.
In view of this, be necessary to develop a kind of automatic stamping device in fact, to address the above problem.
[summary of the invention]
Therefore, the purpose of this utility model is to provide a kind of automatic stamping device, and solving prior art all when deckle-edged product, needs multiple equipment gradation die-cut, the problem of troublesome poeration in die cut surface and side.
In order to achieve the above object, the automatic stamping device that the utility model provides, comprising:
Upper module, which is provided with die-cut structure;
Lower module, places product on it, described lower module one side is provided with side blow structure.
Optionally, described lower module one side has rail groove, and described rail groove is placed described product, and described automatic stamping device also has pushing structure, and it is located at described rail groove away from described lower module one end.
Optionally, described automatic stamping device also has side material baffle structure, is located at described lower module one side, and when the push rod of described side material baffle structure extends, correspondence is held in the position that product is placed when die-cut.
Optionally, have bottom knockout structure on described lower module, described bottom knockout structure is held in the hollow part of product lower surface when die-cut.
Optionally, described automatic stamping device has starting switch, and described starting switch is that pin is stepped on switch.
Optionally, described automatic stamping device also has insufflation unit and charging conduit, and described insufflation unit is located at described lower module one side, and described charging conduit is located at the opposite side of described lower module.
Optionally, described automatic stamping device has control module, controls the running of described automatic stamping device.
Compared to prior art, utilize automatic stamping device of the present utility model, when use, operator only need be positioned over described product on described rail groove, and start pin and step on switch, pushing structure promotes described product, side material baffle structure drives push rod to be held in product side simultaneously, in the time that product arrives position to be punched, described pushing structure and described side material baffle structure return, described bottom knockout structural priming, the lower surface hollow part of described product is supported, described die-cut structural priming, described upper module presses down, the burr of punching products outer ring and surface holes; In the time that described die-cut structure arrival presses down formulation position, described side blow structural priming, die-cut described product side opening burr; Afterwards, described side blow structure return, described die-cut structure return, described product departs from upper module under the described push rod effect of upper module, and is blown off in described charging conduit by described insufflation unit.All complete continuously by this device because twice of the front of described product and side are die-cut, therefore efficiency is higher; After product is positioned over to rail groove, lay without carrying out again craft, after die-cut completing, without manual pickup, save manpower and safer; Make the switch-starter that tramps with one's feet, avoid operator's fatigue.
[accompanying drawing explanation]
Fig. 1 illustrates the structural representation into a kind of product.
Fig. 2 illustrates the perspective view into automatic stamping device one preferred embodiment of the present utility model.
Fig. 3 illustrates the decomposition texture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 4 illustrates pushing structure the first status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 5 illustrates pushing structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 6 illustrates side material baffle structure the first status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 7 illustrates side material baffle structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 8 illustrates bottom knockout structure the first status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Fig. 9 illustrates bottom knockout structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Figure 10 illustrates side blow structure the first status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
Figure 11 illustrates side blow structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model.
[specific embodiment]
Please jointly consult Fig. 2, Fig. 3, Fig. 2 illustrates and illustrates the decomposition texture schematic diagram into automatic stamping device one preferred embodiment of the present utility model for perspective view, Fig. 3 of automatic stamping device one preferred embodiment of the present utility model.
The automatic stamping device that the utility model provides, comprising:
Upper module 100, which is provided with die-cut structure 101;
Lower module 102, places product 10 on it, described lower module 102 1 sides are provided with side blow structure 103.
Wherein, described lower module 102 1 sides have rail groove 104, and described rail groove 104 is placed described product 10, and described automatic stamping device also has pushing structure 105(and driven by pusher cylinder), it is located at described rail groove 104 away from described lower module 102 one end.
Wherein, described automatic stamping device also has side material baffle structure 106(and is driven by side block material cylinder), be located at described lower module 102 1 sides, when the push rod of described side material baffle structure 106 extends, correspondence is held in the position that product 10 is placed when die-cut.
Wherein, on described lower module 102, there is bottom knockout structure 107(by bottom knockout hydraulic oil cylinder driving), described bottom knockout structure 107 is held in the hollow part of product 10 lower surface when die-cut.
Wherein, described automatic stamping device has starting switch (not shown), and described starting switch is that pin is stepped on switch.
Wherein, described automatic stamping device also has insufflation unit (not shown) and charging conduit (not shown), and described insufflation unit is located at described lower module 102 1 sides, and described charging conduit is located at the opposite side of described lower module 102.
Wherein, described automatic stamping device has control module (not shown), controls the running of described automatic stamping device.
Referring again to Fig. 4, Fig. 5, Fig. 4 illustrates and illustrates pushing structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model for pushing structure the first status architecture schematic diagram, Fig. 5 of automatic stamping device one preferred embodiment of the present utility model.
When use, operator only need be positioned over described product 10 on described rail groove 104, and starts pin and step on switch, and pushing structure 105 promotes described product 10.
Please again in conjunction with consulting Fig. 6, Fig. 7, Fig. 6 illustrates and illustrates side material baffle structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model for side material baffle structure the first status architecture schematic diagram, Fig. 7 of automatic stamping device one preferred embodiment of the present utility model.
From the above, meanwhile, side material baffle structure 106 drives push rod to be held in product 10 sides (place product 10 and jump, guarantee product 10 in-position smoothly) on lower module 102, in the time that product 10 arrives position to be punched, described pushing structure 105 and described side material baffle structure 106 returns.
Referring again to Fig. 8, Fig. 9, Fig. 8 illustrates and illustrates bottom knockout structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model for bottom knockout structure the first status architecture schematic diagram, Fig. 9 of automatic stamping device one preferred embodiment of the present utility model.
From the above, described bottom knockout structure 107 starts, and the lower surface hollow part of described product 10 is supported to (preventing that this part from being damaged by pressure when die-cut), and described die-cut structure 101 starts, described upper module 100 presses down, the burr of punching products 10 outer rings 11 and surface holes 12.
Please again in conjunction with consulting Figure 10, Figure 11, Figure 10 illustrates and illustrates side blow structure the second status architecture schematic diagram into automatic stamping device one preferred embodiment of the present utility model for side blow structure the first status architecture schematic diagram, Figure 11 of automatic stamping device one preferred embodiment of the present utility model.
From the above, in the time that described die-cut structure 101 arrival press down formulation position, described side blow structure 103 starts, the burr of the side opening 13 of die-cut described product 10.
Afterwards, described side blow structure 103 returns, described die-cut structure 101 returns, described product 10 departs from upper module 100 under the push rod effect of upper module 100, and is blown off in described charging conduit by described insufflation unit.
To sum up, all complete continuously by this device because twice of the front of described product 10 and side are die-cut, therefore efficiency is higher; After product 10 is positioned over to rail groove 104, lay without carrying out craft, employing blowing structure and charging conduit after die-cut completing, without manual pickup, save manpower and safer again; Make the switch-starter that tramps with one's feet, avoid operator's fatigue.

Claims (7)

1. an automatic stamping device, is characterized in that, comprising:
Upper module, which is provided with die-cut structure;
Lower module, places product on it, described lower module one side is provided with side blow structure.
2. automatic stamping device as claimed in claim 1, is characterized in that, described lower module one side has rail groove, and described rail groove is placed described product, and described automatic stamping device also has pushing structure, and it is located at described rail groove away from described lower module one end.
3. automatic stamping device as claimed in claim 1, is characterized in that, described automatic stamping device also has side material baffle structure, is located at described lower module one side, and when the push rod of described side material baffle structure extends, correspondence is held in the position that product is placed when die-cut.
4. automatic stamping device as claimed in claim 1, is characterized in that, has bottom knockout structure on described lower module, and described bottom knockout structure is held in the hollow part of product lower surface when die-cut.
5. automatic stamping device as claimed in claim 1, is characterized in that, described automatic stamping device has starting switch, and described starting switch is that pin is stepped on switch.
6. automatic stamping device as claimed in claim 1, is characterized in that, described automatic stamping device also has insufflation unit and charging conduit, and described insufflation unit is located at described lower module one side, and described charging conduit is located at the opposite side of described lower module.
7. automatic stamping device as claimed in claim 1, is characterized in that, described automatic stamping device has control module, controls the running of described automatic stamping device.
CN201320727980.6U 2013-11-15 2013-11-15 Automatic stamping die device Expired - Lifetime CN203610468U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320727980.6U CN203610468U (en) 2013-11-15 2013-11-15 Automatic stamping die device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320727980.6U CN203610468U (en) 2013-11-15 2013-11-15 Automatic stamping die device

Publications (1)

Publication Number Publication Date
CN203610468U true CN203610468U (en) 2014-05-28

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104139127A (en) * 2014-07-24 2014-11-12 安徽省宁国市东波紧固件有限公司 Air blowing discharging type die stamping machine
CN104175362A (en) * 2014-07-11 2014-12-03 德清县宝华氟塑料工贸有限公司 Automatic punching device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104175362A (en) * 2014-07-11 2014-12-03 德清县宝华氟塑料工贸有限公司 Automatic punching device
CN104139127A (en) * 2014-07-24 2014-11-12 安徽省宁国市东波紧固件有限公司 Air blowing discharging type die stamping machine

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Granted publication date: 20140528

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