CN219985967U - Continuous stamping die for resistance braking resistance belt - Google Patents

Continuous stamping die for resistance braking resistance belt Download PDF

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Publication number
CN219985967U
CN219985967U CN202321120515.6U CN202321120515U CN219985967U CN 219985967 U CN219985967 U CN 219985967U CN 202321120515 U CN202321120515 U CN 202321120515U CN 219985967 U CN219985967 U CN 219985967U
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plate
punching
limiting
base plate
stamping
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CN202321120515.6U
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Chinese (zh)
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余锦俭
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Wuhan Zhengyuan Electric Co ltd
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Wuhan Zhengyuan Electric Co ltd
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Abstract

A resistive brake resistance band continuous stamping die, comprising: the device comprises an upper die holder, a lower die holder, a first stamping component and a second stamping component; the first punching component and the second punching component are arranged between an upper die holder and a lower die holder which are arranged in an up-down opposite manner in parallel and are used for punching and punching the material plate; the first punching assembly comprises a first clamping plate, a first stripper plate, a first base plate, a first unloading spring, a first punching head and a first punching head; the second punching assembly comprises a second clamping plate, a second stripper plate, a second base plate, a second bottom plate, a second upper discharging spring, a second lower discharging spring, a second punching head and a second punching head. The continuous stamping die for the resistance braking resistance belt is convenient to operate, can punch a material plate, completes stamping operation in opposite directions, is formed at one time, is favorable for stabilizing the angle and the size of a product, saves labor cost, material cost, improves production efficiency, and improves the quality stability of the product.

Description

Continuous stamping die for resistance braking resistance belt
Technical Field
The utility model relates to the technical field of stamping forming, in particular to a continuous stamping die for a resistance braking resistance belt.
Background
The resistance braking resistance belt is obtained by punching and stamping a sheet of material plate in the production process, and the sheet of material plate is required to be punched and also required to be stamped and formed.
Therefore, it is necessary to design a continuous stamping die for a resistance braking resistance belt to overcome the above problems.
Disclosure of Invention
In order to avoid the problems, the continuous stamping die for the resistance braking resistance belt is provided, the operation is convenient, the punching operation can be carried out on a material plate, meanwhile, the opposite stamping operation is completed, the stamping operation is formed at one time, the stability of the angle and the size of a product is facilitated, the labor cost is saved, the material cost is reduced, the production efficiency is improved, and the quality stability of the product is improved.
The utility model provides a continuous stamping die for a resistance braking resistance belt, which comprises the following components: the device comprises an upper die holder, a lower die holder, a first stamping component and a second stamping component; the first stamping component and the second stamping component are arranged between an upper die holder and a lower die holder which are arranged in an up-down opposite manner in parallel;
the first punching assembly comprises a first clamping plate, a first stripper plate, a first base plate, a first unloading spring, a first punching head and a first punching head; the first clamping plate is fixed at the bottom of the upper die holder, the first stripper plate is elastically installed at the bottom of the first clamping plate through a first discharging spring, the first punching head and the first punching head are fixed on the first clamping plate and penetrate through the first stripper plate downwards, the first bottom plate is fixed on the lower die holder, the first base plate is installed on the first bottom plate and is positioned below the first stripper plate, and a first punching groove for accommodating the first punching head to extend in and a first punching groove matched with the first punching head are formed in the first base plate;
the second punching assembly comprises a second clamping plate, a second stripper plate, a second base plate, a second bottom plate, a second upper discharging spring, a second lower discharging spring, a second punching head and a second punching head; the second clamping plate is fixed at the bottom of the upper die holder, the second stripper plate is elastically mounted at the bottom of the second clamping plate through a second upper discharge spring, the second bottom plate is fixed on the lower die holder, the second base plate is elastically mounted on the second bottom plate through a second lower discharge spring, the second punching head is fixed on the second clamping plate and penetrates the second stripper plate downwards, a second punching groove for accommodating the second punching head to extend in is formed in the second base plate, the second punching head is fixed on the second bottom plate and penetrates the second base plate upwards, a second punching groove matched with the second punching head is formed in the second stripper plate, and the elastic force of the second upper discharge spring is smaller than that of the second lower discharge spring.
Preferably, the upper die holder and the lower die holder are respectively provided with an outer guide sleeve and an outer guide pillar.
Preferably, the first punching component and the second punching component are provided with inner guide posts for positioning.
Preferably, the first punching assembly and the second punching assembly are provided with a limiting assembly for limiting and positioning the material plate to be processed, the limiting assembly comprises a limiting spring and a limiting piece, the limiting piece is arranged on the first bottom plate or the second bottom plate through the limiting spring, the limiting piece upwards penetrates through the first base plate or the second base plate, and the limiting piece is provided with a clamping groove for accommodating the material plate to be processed to be clamped in.
Preferably, the limiting assembly further comprises a limiting block, the limiting block is arranged on the first base plate or the second base plate, a limiting table is arranged on the limiting piece, and the limiting block is in downward limiting butt joint with the limiting table and used for preventing the limiting piece from excessively moving upwards.
Preferably, limiting assemblies are arranged on two opposite sides of the material plate to be processed on the first stamping assembly and the second stamping assembly.
Preferably, a punching insert is provided at the first punching slot or the second punching slot.
Preferably, the first and second punching slots extend downwardly through the first and second backing plates, respectively.
Preferably, the first stripper plate is mounted on the first clamping plate in a vertically movable manner through a discharge bolt, the second stripper plate is mounted on the second clamping plate in a vertically movable manner through a discharge bolt, and the second base plate is mounted on the second base plate in a vertically movable manner through a discharge bolt.
Compared with the prior art, the utility model has the following beneficial effects: the continuous stamping die for the resistance braking resistance belt is convenient to operate, can punch a material plate, completes stamping operation in opposite directions, is formed at one time, is favorable for stabilizing the angle and the size of a product, saves labor cost, material cost, improves production efficiency, and improves the quality stability of the product.
Drawings
FIG. 1 is a schematic structural view of a continuous stamping die for a resistance braking resistance belt according to a preferred embodiment of the present utility model;
FIG. 2 is a schematic view of a part of a continuous stamping die for a resistance braking resistance belt according to a preferred embodiment of the present utility model;
FIG. 3 is an enlarged schematic view of the structure of FIG. 2A;
FIG. 4 is a schematic view of another angular section of a continuous stamping die for a resistance braking resistance belt according to a preferred embodiment of the present utility model;
reference numerals of the specific embodiments illustrate:
1. an upper die holder, 11, an outer guide sleeve,
2. the lower die holder, 21 and the outer guide post,
3. the first punching assembly, 31, the first clamping plate, 32, the first stripper plate, 33, the first backing plate, 331, the first punching slot, 332, the first punching slot, 34, the first bottom plate, 35, the first discharging spring, 36, the first punching head, 37, the first punching head,
4. a second punching assembly 41, a second clamping plate 42, a second stripper plate 421, a second punching groove 43, a second backing plate 44, a second bottom plate 45, a second upper discharge spring 46, a second lower discharge spring 47, a second punching head 48, a second punching head,
5. an inner guide post is arranged on the inner guide post,
6. a limit component 61, a limit spring 62, a limit piece 621, a clamping groove 622, a limit table 63 and a limit block,
7. the insert is to be punched out,
8. and (5) a discharging bolt.
Detailed Description
The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
As shown in fig. 1 to 4, the continuous stamping die for a resistance braking resistance belt provided in this embodiment includes: an upper die holder 1, a lower die holder 2, a first punching component 3 and a second punching component 4; the first punching component 3 and the second punching component 4 are arranged between the upper die holder 1 and the lower die holder 2 which are arranged in a vertically opposite manner in a left-right parallel manner and are used for respectively punching and punching the left part and the right part of the material plate to be processed.
As shown in fig. 1 to 4, the first punching assembly 3 includes a first clamping plate 31, a first stripper plate 32, a first backing plate 33, a first bottom plate 34, a first discharge spring 35, a first punching head 36, and a first punching head 37.
Wherein, first splint 31 is fixed in upper die base 1 bottom, and first stripper plate 32 is installed on first splint 31 through the unloading bolt 8 can reciprocate, and first stripper plate 32 is installed in first splint 31 bottom through first unloading spring 35 elasticity, and first unloading spring 35 sets up between first splint 31 and first stripper plate 32. Meanwhile, the first punching head 36 and the first punching head 37 are fixed on the first clamping plate 31 and penetrate through the first stripper plate 32 downwards, the first bottom plate 34 is fixed on the lower die holder 2, the first base plate 33 is installed on the first bottom plate 34 and located below the first stripper plate 32, and the first base plate 33 is provided with a first punching groove 331 for accommodating the first punching head 36 to extend into and a first punching groove 332 matched with the first punching head 37.
When the upper die plate moves downwards, the first clamping plate 31 and the first stripper plate 32 move downwards along with the lower movement, the first stripper plate 32 contacts with the material plate placed on the first base plate 33 and moves downwards continuously, the first unloading spring 35 compresses, and the first punching head 36 and the first punching head 37 extend downwards out of the first stripper plate 32 and act on the material plate downwards, so that punching and punching forming are completed; the upper die plate moves upwards, the first clamping plate 31, the first punching head 36 and the first punching head 37 move upwards along with the upper die plate, the compressed first unloading spring 35 has downward acting force on the first stripper plate 32 and downward acting force on the material plate, so that the punched and punched material plate is separated from the first punching head 36 and the first punching head 37 to stay on the first base plate 33, and the material plate is convenient to take and replace by workers.
As shown in fig. 1 to 4, the second punching assembly 4 includes a second clamping plate 41, a second stripper plate 42, a second backing plate 43, a second bottom plate 44, a second upper discharge spring 45, a second lower discharge spring 46, a second punching head 47, and a second punching head 48.
The second clamping plate 41 is fixed at the bottom of the upper die holder 1, the second stripper plate 42 is mounted on the second clamping plate 41 in a manner that the second stripper plate 42 can move up and down through the unloading bolt 8, the second stripper plate 42 is elastically mounted at the bottom of the second clamping plate 41 through the second upper unloading spring 45, and the second upper unloading spring 45 is arranged between the second clamping plate 41 and the second stripper plate 42 and has a downward acting force on the second stripper plate 42. Meanwhile, a second bottom plate 44 is fixed on the lower die holder 2, a second base plate 43 is arranged on the second bottom plate 44 in a vertically movable way through a discharge bolt 8, the second base plate 43 is elastically arranged on the second bottom plate 44 through a second lower discharge spring 46, and the second lower discharge spring 46 is arranged between the second base plate 43 and the second bottom plate 44 and has upward acting force on the second base plate 43; and the elastic force of the second upper discharge spring 45 is smaller than that of the second lower discharge spring 46.
Meanwhile, the second punching head 47 is fixed on the second clamping plate 41 and passes through the second stripper plate 42 downwards, a second punching groove for accommodating the second punching head 47 is formed in the second base plate 43, the second punching head 48 is fixed on the second bottom plate 44 and passes through the second base plate 43 upwards, and a second punching groove 421 matched with the second punching head 48 is formed in the second stripper plate 42. When the upper die holder 1 moves downwards, the second clamping plate 41 and the second stripper plate 42 move downwards along with the lower stripper plate, the lower stripper plate contacts with a material plate placed on the second base plate 43 and moves downwards continuously, the second upper discharge spring 45 and the second lower discharge spring 46 are compressed, the second punching head 47 punches the material plate downwards through the second stripper plate 42 because the elastic force of the second upper discharge spring 45 is smaller than that of the second lower discharge spring 46, and then the second punching head 48 extends upwards to extend out of the second base plate 43 for punching and forming the material plate, and punching and forming are finished firstly and then are carried out, so that the material plate is prevented from deforming unsatisfactory; after punching and stamping are completed, the upper die holder 1 moves upwards, and the compressed upper discharging spring and the second lower discharging spring 46 respectively have downward and upward acting forces on the second stripper plate 42 and the second base plate 43, so that the machined material plate is separated from the second punching head 47 and the second punching head 48, and the material is convenient for workers to take materials and continuously feed materials, and the device is simple, efficient, stable and practical.
For positioning the relative movement of the upper die holder 1 and the lower die holder 2, an outer guide sleeve 11 and an outer guide post 21 are respectively arranged on the upper die holder 1 and the lower die holder 2. In order to ensure the accuracy of punching and stamping forming of the material plates, the first stamping assembly 3 and the second stamping assembly 4 are respectively provided with an inner guide pillar 5 for positioning, in this embodiment, the first clamping plate 31, the second clamping plate 41 and the second bottom plate 44 are respectively provided with an inner guide pillar 5, the first stripping plate 32, the second stripping plate 42 and the second bottom plate 43 are provided with through grooves for allowing the corresponding inner guide pillars 5 to pass through, and the first stripping plate 32, the second stripping plate 42 and the second bottom plate 43 can be guided to move, and meanwhile, the first bottom plate 33, the second stripping plate 42 and the second bottom plate 43 are provided with matching grooves for extending in corresponding directions of the inner guide pillars 5, so that the positioning effect is good.
In order to limit and position the material plate, the punching and stamping operation is convenient, a limiting component 6 for limiting and positioning the material plate to be processed is arranged on the first stamping component 3 and the second stamping component 4, and limiting components 6 are arranged on two opposite sides of the material plate to be processed on the first stamping component 3 and the second stamping component 4, as shown in figures 1 to 4. Specifically, the limiting component 6 includes a limiting spring 61 and a limiting member 62, the limiting member 62 is disposed on the first bottom plate 34 or the second bottom plate 44 through the limiting spring 61, the limiting member 62 passes through the first cushion plate 33 or the second cushion plate 43 upwards, and a clamping groove 621 for clamping a material plate to be processed is disposed on the limiting member 62. Meanwhile, the limiting component 6 further comprises a limiting block 63, the limiting block 63 is installed on the first base plate 33 or the second base plate 43, a limiting table 622 is arranged on the limiting piece 62, and the limiting block 63 is in downward limiting abutting connection with the limiting table 622 and used for preventing the limiting piece 62 from excessively moving upwards, as shown in fig. 3. According to the shape and the size of the material plate, a plurality of limiting assemblies 6 are arranged on the first stamping assembly 3 and the second stamping assembly 4, during processing, the material plate to be processed is placed on the first base plate 33 and the second base plate 43, the periphery of the material plate is clamped into the clamping groove 621 of the limiting piece 62, when the material plate is pressed down and pressed on the first base plate 33 and the second base plate 43, the limiting spring 61 is compressed along with the material plate, the limiting piece 62 continues to limit and position the material plate, the left part and the right part of the material plate are guaranteed to be placed on the first base plate 33 and the second base plate 43 in a fitting mode, and the accuracy and the stability of punching and stamping forming of the left part and the right part are guaranteed.
Meanwhile, the first punching groove 331 or the second punching groove is provided with the punching insert 7, the first punching groove 331 and the second punching groove respectively extend downwards to pass through the first base plate 33 and the second base plate 43, and waste after punching can fall down along the first punching groove 331 or the second punching groove and cannot fall on the material plate or the first base plate 33 and the second base plate 43, so that adverse effects on the processing of the material plate caused by the waste are effectively avoided.
This continuous stamping die simple operation can carry out the punching operation to the flitch, accomplishes the opposite stamping operation of direction simultaneously, and one shot forming is favorable to the stability of product angle and size, uses manpower sparingly cost, and material cost improves production efficiency, improves the quality stability of product.
Finally, it should be noted that: the above embodiments are only for illustrating the technical solution of the present utility model, and not for limiting the same; although the utility model has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some or all of the technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit of the utility model.

Claims (9)

1. A continuous stamping die for a resistance braking resistance belt, comprising: the device comprises an upper die holder, a lower die holder, a first stamping component and a second stamping component; the first stamping component and the second stamping component are arranged between an upper die holder and a lower die holder which are arranged in an up-down opposite manner in parallel;
the first punching assembly comprises a first clamping plate, a first stripper plate, a first base plate, a first unloading spring, a first punching head and a first punching head; the first clamping plate is fixed at the bottom of the upper die holder, the first stripper plate is elastically installed at the bottom of the first clamping plate through a first discharging spring, the first punching head and the first punching head are fixed on the first clamping plate and penetrate through the first stripper plate downwards, the first bottom plate is fixed on the lower die holder, the first base plate is installed on the first bottom plate and is positioned below the first stripper plate, and a first punching groove for accommodating the first punching head to extend in and a first punching groove matched with the first punching head are formed in the first base plate;
the second punching assembly comprises a second clamping plate, a second stripper plate, a second base plate, a second bottom plate, a second upper discharging spring, a second lower discharging spring, a second punching head and a second punching head; the second clamping plate is fixed at the bottom of the upper die holder, the second stripper plate is elastically mounted at the bottom of the second clamping plate through a second upper discharge spring, the second bottom plate is fixed on the lower die holder, the second base plate is elastically mounted on the second bottom plate through a second lower discharge spring, the second punching head is fixed on the second clamping plate and penetrates the second stripper plate downwards, a second punching groove for accommodating the second punching head to extend in is formed in the second base plate, the second punching head is fixed on the second bottom plate and penetrates the second base plate upwards, a second punching groove matched with the second punching head is formed in the second stripper plate, and the elastic force of the second upper discharge spring is smaller than that of the second lower discharge spring.
2. The resistive brake resistance band continuous stamping die of claim 1, wherein: the upper die holder and the lower die holder are respectively provided with an outer guide sleeve and an outer guide post.
3. The resistive brake resistance band continuous stamping die of claim 1, wherein: and the first stamping component and the second stamping component are respectively provided with an inner guide pillar for positioning.
4. The resistive brake resistance band continuous stamping die of claim 1, wherein: the first stamping assembly and the second stamping assembly are provided with limiting assemblies for limiting and positioning the material plates to be processed, each limiting assembly comprises a limiting spring and a limiting piece, each limiting piece is arranged on the first base plate or the second base plate through the corresponding limiting spring, each limiting piece upwards penetrates through the corresponding first base plate or the corresponding second base plate, and each limiting piece is provided with a clamping groove for accommodating the material plates to be processed to be clamped in.
5. The continuous stamping die for a resistance braking resistance belt as set forth in claim 4, wherein: the limiting assembly further comprises a limiting block, the limiting block is arranged on the first base plate or the second base plate, a limiting table is arranged on the limiting piece, and the limiting block is in downward limiting abutting connection with the limiting table and is used for preventing the limiting piece from excessively moving upwards.
6. The continuous stamping die for a resistance braking resistance belt as set forth in claim 4, wherein: limiting assemblies are arranged on two opposite sides of the material plate to be processed on the first stamping assembly and the second stamping assembly.
7. The resistive brake resistance band continuous stamping die of claim 1, wherein: and a punching insert is arranged at the first punching groove or the second punching groove.
8. The resistive brake resistance band continuous stamping die of claim 1, wherein: the first punching groove and the second punching groove respectively extend downwards to pass through the first backing plate and the second backing plate.
9. The resistive brake resistance band continuous stamping die of claim 1, wherein: the first stripper plate is arranged on the first clamping plate in a vertically movable mode through the unloading bolt, the second stripper plate is arranged on the second clamping plate in a vertically movable mode through the unloading bolt, and the second base plate is arranged on the second bottom plate in a vertically movable mode through the unloading bolt.
CN202321120515.6U 2023-05-10 2023-05-10 Continuous stamping die for resistance braking resistance belt Active CN219985967U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321120515.6U CN219985967U (en) 2023-05-10 2023-05-10 Continuous stamping die for resistance braking resistance belt

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321120515.6U CN219985967U (en) 2023-05-10 2023-05-10 Continuous stamping die for resistance braking resistance belt

Publications (1)

Publication Number Publication Date
CN219985967U true CN219985967U (en) 2023-11-10

Family

ID=88615501

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321120515.6U Active CN219985967U (en) 2023-05-10 2023-05-10 Continuous stamping die for resistance braking resistance belt

Country Status (1)

Country Link
CN (1) CN219985967U (en)

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