CN214214077U - Segment difference type cutting module - Google Patents

Segment difference type cutting module Download PDF

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Publication number
CN214214077U
CN214214077U CN202120135724.2U CN202120135724U CN214214077U CN 214214077 U CN214214077 U CN 214214077U CN 202120135724 U CN202120135724 U CN 202120135724U CN 214214077 U CN214214077 U CN 214214077U
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China
Prior art keywords
punching
cutting
jumper
groups
pressing block
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CN202120135724.2U
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Chinese (zh)
Inventor
陈能强
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Wuxi Chang Ding Electronics Co ltd
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Wuxi Chang Ding Electronics Co ltd
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Abstract

The utility model discloses a differential module that cuts belongs to cutting die technical field of section. The segment difference type cutting module comprises a die base, a pressing block, a cutting template, a plurality of groups of lower punching cutters and a plurality of groups of upper punching cutters; a jumper wire product horizontally penetrates between the pressing block and the cutting template; the lower punching knives of a plurality of groups penetrate through the pressing block to punch the jumper products, and the upper punching knives of a plurality of groups penetrate through the cutting template to punch the jumper products; the lower punching cutter comprises a plurality of rows of first punching cutters and a plurality of rows of second punching cutters, the height of the first punching cutter is lower than that of the second punching cutter, the jumper wire product passes through after the first punching cutter is punched, the jacking process is continued, the second punching cutter is punched, the section difference punching is formed, the density of the jumper wire can be increased, and the material cost is saved while the efficiency is improved.

Description

Segment difference type cutting module
Technical Field
The utility model relates to a cutting die technical field, in particular to differential module that cuts of section.
Background
In the process of processing jumper products, a cutting module is usually used for punching the jumper products, and the jumper arranging direction of the existing cutting module is configured according to a frame, so that the jumper is low in density, low in efficiency and relatively high in cutting cost.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a differential module that cuts to solve the current module wire jumper that cuts and arrange the direction and must follow the frame configuration, lead to wire jumper density not high, the lower problem of efficiency.
In order to solve the technical problem, the utility model provides a segment difference type cutting module, which comprises a mould base, a compact block, a cutting template, a plurality of groups of lower punching cutters and a plurality of groups of upper punching cutters;
a jumper product horizontally penetrates between the pressing block and the cutting template, and the pressing block ascends through the lower part of the pressing block and is pressed with the cutting template to fix the jumper product;
the lower punching knives of a plurality of groups penetrate through the pressing block to punch the jumper products, and the upper punching knives of a plurality of groups penetrate through the cutting template to punch the jumper products;
the plurality of groups of lower punching cutters are composed of a plurality of rows of first punching cutters and a plurality of rows of second punching cutters, and the heights of the first punching cutters are higher than those of the second punching cutters.
Optionally, a jumper wire suction mechanism is installed on the plurality of groups of upper stamping knives.
Optionally, a waste bin is installed at the feed end of the segment difference type cutting module.
Optionally, the bottoms of the plurality of groups of lower punching cutters are connected with a jacking cylinder through a pushing plate, and the plurality of groups of lower punching cutters are pushed by the jacking cylinder to move along the vertical direction.
Optionally, two sides of the pushing plate are respectively provided with a reset mechanism, the reset mechanism mainly comprises a guide pillar and a reset spring, and two ends of the guide pillar are respectively fixedly connected with the pushing plate and the pressing block.
Optionally, the return spring penetrates through the guide post, and two ends of the return spring are respectively fixedly connected with the pushing plate and the guide fixing plate.
Optionally, the rows of the first punching knives and the rows of the second punching knives are distributed in a staggered manner along the feeding direction of the jumper products.
Optionally, a plurality of rows of cutting holes are formed in the cutting template, the cutting holes correspond to the cutting positions of the cutting holes one to one, and the upper punching cutters of the plurality of groups sequentially penetrate through the cutting holes to cut the jumper wire products.
The utility model provides a segment difference type cutting module, which comprises a mould base, a compact block, a cutting template, a plurality of groups of lower punching cutters and a plurality of groups of upper punching cutters; a jumper wire product horizontally penetrates between the pressing block and the cutting template; the lower punching knives of a plurality of groups penetrate through the pressing block to punch the jumper products, and the upper punching knives of a plurality of groups penetrate through the cutting template to punch the jumper products; the lower punching cutter comprises a plurality of rows of first punching cutters and a plurality of rows of second punching cutters, the height of the first punching cutter is lower than that of the second punching cutter, the jumper wire product passes through after the first punching cutter is punched, the jacking process is continued, the second punching cutter is punched, the section difference punching is formed, the density of the jumper wire can be increased, and the material cost is saved while the efficiency is improved.
Drawings
Fig. 1 is a schematic view of an overall structure of a segment difference type cutting module according to the present invention;
fig. 2 is a cross-sectional view of a segment difference type cutting module provided by the present invention;
fig. 3 is a partial structural schematic diagram of a lower half portion of a segment difference type cutting module according to the present invention;
fig. 4 is a partial front view of a lower half of a segment difference type cutting module provided by the present invention;
fig. 5 is a schematic view of a partial structure of the upper half of a segment difference type cutting module according to the present invention.
Detailed Description
The following provides a further detailed description of the segment difference type cutting module according to the present invention with reference to the accompanying drawings and specific embodiments. The advantages and features of the present invention will become more fully apparent from the following description and appended claims. It should be noted that the drawings are in simplified form and are not to precise scale, and are provided for convenience and clarity in order to facilitate the description of the embodiments of the present invention.
Example one
The utility model provides a segment difference type cutting module, the structure of which is shown in figure 1 and figure 2, comprising a mould base 1, a compact block 2, a cutting template 3, a plurality of groups of lower punching knives 4 and a plurality of groups of upper punching knives 5; a jumper product 7 horizontally penetrates between the pressing block 2 and the cutting template 3, and the pressing block 2 ascends through the lower part to press and fix the jumper product 7 with the cutting template 3; the lower punching knives 4 penetrate through the pressing block 2 to punch the jumper products 7, and the upper punching knives 5 penetrate through the cutting template 3 to punch the jumper products 7; the plurality of groups of lower stamping knives 4 are composed of a plurality of rows of first stamping knives 41 and a plurality of rows of second stamping knives 42, and the height of the first stamping knives 41 is higher than that of the second stamping knives 42; a plurality of rows of the first punching knives 41 and a plurality of rows of the second punching knives 42 are distributed in a staggered manner along the feeding direction of the jumper products 7.
Specifically, a jumper wire suction mechanism 6 is arranged on a plurality of groups of upper stamping knives 5, and the jumper wire suction mechanism 6 sucks a punched jumper wire product through a jumper wire suction nozzle at the top end of each upper stamping knife 5 in a negative pressure adsorption mode and then assembles the jumper wire product; and a waste box 8 is arranged at the tail end of the feeding of the segment difference type cutting module and used for storing the punched waste.
Specifically, as shown in fig. 2 to 4, the bottoms of the plurality of groups of lower punching tools 4 are connected with a jacking cylinder 9 through a pushing plate 11, and the plurality of groups of lower punching tools 4 are pushed by the jacking cylinder 9 to move along the vertical direction; two sides of the pushing plate 11 are respectively provided with a reset mechanism 10, the reset mechanism 10 mainly comprises a guide pillar and a reset spring, and two ends of the guide pillar are respectively fixedly connected with the pushing plate 11 and the pressing block 2; the reset spring penetrates through the guide post, two ends of the reset spring are fixedly connected with the pushing plate 11 and the guide fixing plate 12 respectively, when punching is carried out, the pushing plate 11 is pushed to move upwards by the jacking cylinder 9, the pushing plate 11 pushes the pressing block 2 and a plurality of groups of lower punching cutters 4 to move upwards, firstly, the pressing block 2 is pushed by the reset mechanism 10 to be in contact with the jumper product 7 and tightly press and fix the jumper product 7 with the cutting template 3, and at the moment, the reset spring is in a compressed state; and then, continuously pushing a plurality of groups of lower punching cutters 4 to upwards punch the jumper products 7, and after punching is completed, pushing the pushing plate 11 to return to the original position by the return spring.
Specifically, as shown in fig. 5, a plurality of rows of cutting holes 31 are formed in the cutting template 3, the cutting holes 31 correspond to the cutting positions of the cutting holes 31 one by one, and the plurality of groups of upper punching cutters 5 sequentially penetrate through the cutting holes 31 to cut the jumper products 7.
Specifically, the jacking cylinder 9 pushes the pressing block 2 to press and fix the jumper wire product 7 upwards, the first punching knives 41 in the rows are matched with the upper punching knives 5 in the groups to punch odd-numbered rows of jumper wires, and then the jumper wires are assembled after being sucked by the jumper wire suction nozzle; and then, the lower punching knife 4 is continuously lifted, the even rows of jumper wires are punched by the plurality of rows of second punching knives 42, and then the jumper wires are assembled after being sucked by the jumper wire suction nozzle, so that the density of the jumper wires can be increased, the material cost is reduced, and the punching efficiency is improved.
The above description is only for the preferred embodiment of the present invention and is not intended to limit the scope of the present invention, and any modification and modification made by those skilled in the art according to the above disclosure are all within the scope of the claims.

Claims (8)

1. A segment difference type cutting module is characterized by comprising a mold base (1), a pressing block (2), a cutting template (3), a plurality of groups of lower punching cutters (4) and a plurality of groups of upper punching cutters (5);
a jumper product (7) horizontally penetrates between the pressing block (2) and the cutting template (3), and the jumper product (7) is pressed and fixed with the cutting template (3) by the pressing block (2) which is arranged below the pressing block (2) to ascend;
the lower punching knives (4) penetrate through the pressing block (2) to punch the jumper products (7), and the upper punching knives (5) penetrate through the cutting template (3) to punch the jumper products (7);
the plurality of groups of lower punching knives (4) are composed of a plurality of rows of first punching knives (41) and a plurality of rows of second punching knives (42), and the height of the first punching knives (41) is higher than that of the second punching knives (42).
2. The segment difference type cutting module according to claim 1, wherein a jumper drawing mechanism (6) is installed on a plurality of groups of the upper punching knives (5).
3. The segment type cutting die set according to claim 1, wherein the feeding end of the segment type cutting die set is provided with a waste box (8).
4. The segment difference type cutting die set according to claim 1, characterized in that the bottom of the plurality of groups of the lower punching knives (4) is connected with a jacking cylinder (9) through a pushing plate (11), and the plurality of groups of the lower punching knives (4) are pushed to move along the vertical direction through the jacking cylinder (9).
5. The differential cutting die set according to claim 4, characterized in that a reset mechanism (10) is installed on each side of the pushing plate (11), the reset mechanism (10) mainly comprises a guide post and a reset spring, and both ends of the guide post are fixedly connected with the pushing plate (11) and the pressing block (2) respectively.
6. The differential cutting die set according to claim 5, wherein the return spring passes through the guide post, and both ends of the return spring are fixedly connected with the pushing plate (11) and the guide fixing plate (12), respectively.
7. The segment difference type cutting die set according to claim 1, wherein a plurality of rows of the first punching knives (41) and a plurality of rows of the second punching knives (42) are distributed in a staggered manner along the feeding direction of the jumper product (7).
8. The segment difference type cutting module according to claim 1, wherein the cutting template (3) is provided with a plurality of rows of cutting holes (31), the cutting holes (31) correspond to the cutting positions of the cutting holes (31) one by one, and the plurality of groups of upper punching knives (5) sequentially penetrate through the cutting holes (31) to punch the jumper products (7).
CN202120135724.2U 2021-01-18 2021-01-18 Segment difference type cutting module Active CN214214077U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120135724.2U CN214214077U (en) 2021-01-18 2021-01-18 Segment difference type cutting module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120135724.2U CN214214077U (en) 2021-01-18 2021-01-18 Segment difference type cutting module

Publications (1)

Publication Number Publication Date
CN214214077U true CN214214077U (en) 2021-09-17

Family

ID=77691366

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120135724.2U Active CN214214077U (en) 2021-01-18 2021-01-18 Segment difference type cutting module

Country Status (1)

Country Link
CN (1) CN214214077U (en)

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