CN212821926U - Accurate electric motor car seat support mould of blank - Google Patents

Accurate electric motor car seat support mould of blank Download PDF

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Publication number
CN212821926U
CN212821926U CN202021835905.8U CN202021835905U CN212821926U CN 212821926 U CN212821926 U CN 212821926U CN 202021835905 U CN202021835905 U CN 202021835905U CN 212821926 U CN212821926 U CN 212821926U
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China
Prior art keywords
bending
bottom plate
seat support
plate
clamping table
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CN202021835905.8U
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Chinese (zh)
Inventor
王双喜
樊强
张新彦
杨金忠
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Wuhan Donghengsheng Mould Co ltd
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Wuhan Donghengsheng Mould Co ltd
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Abstract

The embodiment of the utility model provides a relate to mold processing technical field, disclose an accurate electric motor car seat support mould of blank. The utility model comprises an outer shell, wherein the outer shell comprises a bottom plate, a vertical plate and a top plate; the first bending platform is arranged on the bottom plate in a lifting manner; the second bending platform is arranged on the top plate in a lifting manner, and the first bending platform and the second bending platform are arranged oppositely; the first clamping table is fixed on the bottom plate; the second clamping table is arranged on the top plate in a lifting manner, and the first clamping table and the second clamping table are arranged oppositely; the cutting device comprises a control table, a stamping rod and a cutting edge. The embodiment of the utility model provides an accurate electric motor car seat support mould of blank can solve the problem that electric motor car seat support mould produced the burr at the work piece edge easily when cutting the work piece.

Description

Accurate electric motor car seat support mould of blank
Technical Field
The embodiment of the utility model provides a relate to mold processing technical field, in particular to accurate electric motor car seat support mould of blank.
Background
With the development of economy and the improvement of living standard, automobiles are widely used in daily life, and electric automobiles with low energy consumption and low noise are gradually accepted by the public in daily life. The expansion of the electric vehicle consumer goods market drives the rapid development of the electric vehicle part manufacturing industry, how to quickly respond to the market demand, and the problem that the parts manufacturing enterprises pay most attention to is that the products with multiple varieties, high quality and low cost are provided.
In the processing of the electric vehicle seat support, the metal plate is firstly subjected to punch forming by using a die, and then the electric vehicle seat support is cut from the metal plate to obtain a finished product. In the cutting process, because the metal plate has high hardness, a plurality of burrs are generated at the cutting position, the appearance and the quality of a product are affected, and workers are easy to be injured when touching the edge of a workpiece.
The inventor finds that the following problems exist in the practical operation: the electric vehicle seat support die is easy to generate burrs at the edge of a workpiece when the workpiece is cut.
SUMMERY OF THE UTILITY MODEL
An object of the embodiment of the utility model is to provide an accurate electric motor car seat support mould of blank for can solve the problem that electric motor car seat support mould produced the burr at the work piece edge easily when cutting the work piece.
In order to solve the technical problem, the embodiment of the utility model provides an electric vehicle seat support mold with accurate blanking, which comprises an outer shell, wherein the outer shell comprises a bottom plate, a vertical plate and a top plate; the vertical plate is fixed at the edge of the bottom plate, the vertical plate is vertical to the bottom plate, the top plate is fixed at the edge of the vertical plate, the top plate is vertical to the vertical plate, and the top plate is parallel to the bottom plate; the first bending platform is arranged on the bottom plate in a lifting manner; the second bending platform is arranged on the top plate in a lifting manner, and the first bending platform and the second bending platform are arranged oppositely; the first clamping table is fixed on the bottom plate; the second clamping table is arranged on the top plate in a lifting manner, and the first clamping table and the second clamping table are arranged oppositely; the cutting device comprises a control console, a stamping rod and a cutting edge; the control cabinet is fixed in the roof, and the punching press pole telescopically connects in the control cabinet, and the cutting edge is fixed in the punching press pole and keeps away from the one end of control cabinet, and the cutting edge is located between second bending platform and the second centre gripping platform.
In addition, the bottom plate is fixed with the support frame, and the support frame sets up relative cutting edge. Through set up the support frame at the bottom plate for the support frame is from the bottom sprag work piece of treating, provides the fulcrum when buckling the metal sheet for first platform and the second platform of buckling.
In addition, the support frame is U type structure, and the opening gap and the cutting edge of support frame set up relatively. Through setting up U type support for the cutting sword is aimed at to U type mouth, makes the support frame support from the bottom and treats when processing the work piece, can not influence cutting sword cutting work piece.
In addition, the support frame is a stainless steel structural member. Through setting up the support frame for stainless steel structure spare for the support frame has higher intensity, can be for waiting to process the work piece and provide stronger holding power, and is more stable when buckling the metal sheet and providing the fulcrum for first platform and the second of buckling.
In addition, the stamping rod is perpendicular to the second bending table and the second clamping table. Through the arrangement that the stamping rod is perpendicular to the second bending table and the second clamping table, when the stamping rod drives the cutting blade to cut a workpiece to be processed, the stamping rod cannot interfere with the second bending table and the second clamping table.
In addition, the outer shell is of an integrally formed structure. Through making the shell body be integrated into one piece structure for the shell body has better resistance to deformation performance, and is more stable in the course of working.
In addition, the first bending table and the second bending table are stainless steel structural members. Through setting up first platform and the second platform of buckling and be the stainless steel structure for first platform and the second platform of buckling has higher intensity, when centre gripping metal sheet and buckle, can not take place to warp and lead to buckling inadequately, has guaranteed processingquality.
In addition, the first clamping table and the second clamping table are stainless steel structural members. Through setting up first centre gripping platform and second centre gripping platform and being the stainless steel structure for first centre gripping platform has higher intensity with the second centre gripping platform, and is more stable when the centre gripping is treated the processing work piece, can not make and treat that the processing work piece takes place not hard up and lead to the skew.
In addition, the projection area of the top plate projected to the plane of the bottom plate is smaller than the projection area of the bottom plate projected to the plane of the bottom plate. The projection area of the top plate projected to the plane of the bottom plate is smaller than that of the bottom plate projected to the plane of the bottom plate, so that the material of the outer shell is saved, meanwhile, workers can observe the working conditions of bending and cutting from the top, and the cut workpiece can be taken out from the top conveniently.
The utility model discloses embodiment is for prior art, through setting up the first bending platform and the second bending platform centre gripping with wait to process the metal sheet that the work piece is connected, first clamping platform and the fixed work piece of waiting to process of second clamping platform centre gripping, and through the lift of first bending platform and the second bending platform, make the metal sheet with wait to process the work piece junction and buckle many times, after buckling, set up the cutting device who buckles between the platform with second clamping platform and second and cut the region of buckling, separate finished product work piece and metal sheet, simultaneously because cutting department has buckled many times, its intensity weakens, can not produce the burr after the cutting, the aesthetic measure of product has been promoted, the quality of product has been improved, for workman's touch work piece provides safety guarantee.
Drawings
One or more embodiments are illustrated by way of example in the accompanying drawings, which correspond to the figures in which like reference numerals refer to similar elements and which are not to scale unless otherwise specified.
Fig. 1 is a schematic structural view of an electric vehicle seat support mold with precise blanking according to a first embodiment of the present invention;
fig. 2 is a schematic top view of an electric vehicle seat support mold with precise blanking according to a first embodiment of the present invention;
fig. 3 is a schematic front view of an electric vehicle seat support mold with precise blanking according to a second embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the following will explain in detail each embodiment of the present invention with reference to the accompanying drawings. However, it will be appreciated by those of ordinary skill in the art that in various embodiments of the invention, numerous technical details are set forth in order to provide a better understanding of the present application. However, the technical solution claimed in the present application can be implemented without these technical details and various changes and modifications based on the following embodiments. The following embodiments are divided for convenience of description, and should not constitute any limitation to the specific implementation manner of the present invention, and the embodiments may be mutually incorporated and referred to without contradiction.
The utility model discloses a first embodiment relates to an electric vehicle seat support mould with accurate material cutting, as shown in figure 1, comprising an outer shell 100, wherein the outer shell 100 comprises a bottom plate 110, a vertical plate 120 and a top plate 130; the vertical plate 120 is fixed at the edge of the bottom plate 110, the vertical plate 120 is perpendicular to the bottom plate 110, the top plate 130 is fixed at the edge of the vertical plate 120, the top plate 130 is perpendicular to the vertical plate 120, and the top plate 130 is parallel to the bottom plate 10; the first bending table 200, the first bending table 200 is arranged on the bottom plate 110 in a lifting way; the second bending table 300, the second bending table 300 is arranged on the top plate 130 in a lifting way, and the first bending table 200 and the second bending table 300 are arranged oppositely; a first clamping stage 400, the first clamping stage 400 being fixed to the base plate 110; a second clamping table 500, the second clamping table 500 being arranged on the top plate 130 in a liftable manner, the first clamping table 400 being arranged opposite to the second clamping table 500; the cutting device 600, the cutting device 600 includes a control console 610, a punching rod 620, a cutting edge 630; the console 610 is fixed on the top plate 130, the punching rod 620 is telescopically connected to the console 610, the cutting edge 630 is fixed on one end of the punching rod 620 far away from the console 610, and the cutting edge 630 is arranged between the second bending station 300 and the second clamping station 500.
Before machining, a workpiece A to be machined is placed on the first clamping table 400, then the second clamping table 500 is descended, and the workpiece A to be machined is clamped and fixed between the first clamping table 400 and the second clamping table 500. At this time, the metal plate B connected to the workpiece is positioned between the first bending stage 200 and the second bending stage 300. Finally, the control console 610 controls the punching rod 620 to slowly extend out and drives the cutting edge 630 to extend out, so that the cutting edge 630 is abutted against the position to be cut, and the position to be cut is located between the workpiece A to be processed and the metal plate B.
In the processing process, the first bending table 200 is controlled to lift, so that the metal plate B is bent upwards, and meanwhile, the second bending table 300 is lifted to provide a space for bending the metal plate B; then, the second bending table 300 is lowered to bend the metal plate B downward, and the first bending table 200 is lowered to provide a space for bending the metal plate B. Repeated in this way, the joint of the metal plate B and the workpiece A to be processed can be bent for multiple times. According to the material and cutting requirements of the metal plate B, the bending times can be controlled to be two times or more than two times so as to be suitable for processing various materials. After bending, the control console 610 controls the punching rod 620 to contract and rapidly extend out, so as to drive the cutting edge 630 to extend out, so as to perform punching cutting on the joint of the workpiece A to be processed and the metal plate B, and separate the workpiece A to be processed and the metal plate B.
It should be noted that, for convenience of understanding and description, the first bending table 200, the second bending table 300, the first clamping table 400, and the second clamping table 500 are all rectangular parallelepiped, and the shape of the first bending table 200, the second bending table 300, the first clamping table 400, and the second clamping table 500 is not particularly limited in this embodiment.
The punching rod 620 is disposed perpendicular to the second bending stage 300 and the second clamping stage 500. By arranging the punching rod 620 to be perpendicular to the second bending table 300 and the second clamping table 500, the punching rod 620 does not interfere with the second bending table 300 and the second clamping table 500 when driving the cutting edge 630 to cut the workpiece a to be processed.
The outer housing 100 is an integrally formed structure. By making the outer case 100 an integrally formed structure, the outer case 100 has better deformation resistance and is more stable in the manufacturing process.
The first bending station 200 and the second bending station 300 are stainless steel structures. Through setting up first bending table 200 and second bending table 300 and being the stainless steel structure for first bending table 200 and second bending table 300 have higher intensity, when centre gripping metal sheet and buckle, can not take place to warp and lead to buckling insufficiently, have guaranteed processingquality.
The first clamping table 400 and the second clamping table 500 are stainless steel structures. Through setting up first centre gripping platform 400 and second centre gripping platform 500 and be the stainless steel structure for first centre gripping platform 400 and second centre gripping platform 500 have higher intensity, and are more stable when treating the processing work piece in the centre gripping, can not make and treat that the processing work piece takes place not hard up and lead to the skew.
As shown in fig. 2, the projection area of the top plate 130 projected onto the plane of the bottom plate 110 is smaller than the projection area of the bottom plate 110 projected onto the plane of the bottom plate 100. The projection area of the top plate 130 projected to the plane of the bottom plate 110 is smaller than the projection area of the bottom plate 110 projected to the plane of the bottom plate 110, so that the material of the outer shell is saved, meanwhile, workers can observe the working conditions of bending and cutting from the top, and the cut workpiece can be taken out from the top conveniently.
In this embodiment, the metal plate B connected with the workpiece a to be processed is clamped by the first bending table 200 and the second bending table 300, the workpiece a to be processed is clamped and fixed by the first clamping table 400 and the second clamping table 500, and the metal plate B and the workpiece a to be processed are lifted and lowered by the first bending table 200 and the second bending table 300, so that the joint of the metal plate B and the workpiece a to be processed is bent for multiple times, after bending, the bending area is cut by the cutting device 600 arranged between the second clamping table 500 and the second bending table 300, and the finished workpiece is separated from the metal plate.
The utility model discloses a second embodiment relates to an accurate electric motor car seat support mould of blank. The second embodiment is substantially the same as the first embodiment, and mainly differs therefrom in that: as shown in fig. 3, a supporting frame 700 is fixed to the base plate 110, and the supporting frame 700 is disposed opposite to the cutting edge. The supporting frame 700 is a U-shaped structure, and the opening gap 710 of the supporting frame 700 is disposed opposite to the cutting edge 630. The support stand 700 is a stainless steel structure.
In this embodiment, the support frame 700 is disposed on the bottom plate 110, so that the support frame 700 supports the workpiece a to be processed from the bottom, and provides a fulcrum for the first bending station 200 and the second bending station 300 when bending the metal plate. Through setting up the U type support for the cutting edge 630 is aimed at to the U type mouth, makes support frame 700 when waiting to process work piece A from the bottom support, can not influence cutting edge 630 and cut the work piece. Through setting up support frame 700 for the stainless steel structure for support frame 700 has higher intensity, can provide stronger holding power for waiting to process work piece A, and is more stable when bending metal sheet B for first bending table 200 and second bending table 300 and providing the fulcrum.
Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention belongs. The use of "first," "second," and similar terms in the description and claims of the present application do not denote any order, quantity, or importance, but rather the terms are used to distinguish one element from another. Also, the use of the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one. The word "comprise" or "comprises", and the like, means that the element or item listed before "comprises" or "comprising" covers the element or item listed after "comprising" or "comprises" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "upper", "lower", "left", "right", and the like are used merely to indicate relative positional relationships, which may also change accordingly when the absolute position of the object being described changes.
It will be understood by those skilled in the art that the foregoing embodiments are specific examples of the invention, and that various changes in form and details may be made therein without departing from the spirit and scope of the invention in its practical application.

Claims (9)

1. The utility model provides an accurate electric motor car seat support mould of blank which characterized in that includes:
the outer shell comprises a bottom plate, a vertical plate and a top plate; the vertical plate is fixed at the edge of the bottom plate, the vertical plate is perpendicular to the bottom plate, the top plate is fixed at the edge of the vertical plate, the top plate is perpendicular to the vertical plate, and the top plate is parallel to the bottom plate;
the first bending platform is arranged on the bottom plate in a lifting manner;
the second bending table is arranged on the top plate in a lifting manner, and the first bending table and the second bending table are arranged oppositely;
the first clamping table is fixed on the bottom plate;
the second clamping table is arranged on the top plate in a lifting manner, and the first clamping table and the second clamping table are arranged oppositely;
the cutting device comprises a control console, a stamping rod and a cutting edge; the control table is fixed on the top plate, the stamping rod is telescopically connected to the control table, the cutting edge is fixed at one end, far away from the control table, of the stamping rod, and the cutting edge is arranged between the second bending table and the second clamping table.
2. The electric vehicle seat support die with precise blanking according to claim 1, wherein a support frame is fixed on the bottom plate and is arranged opposite to the cutting edge.
3. The electric vehicle seat support die with precise blanking according to claim 2, wherein the supporting frame is of a U-shaped structure, and an opening gap of the supporting frame is arranged opposite to the cutting edge.
4. The precise electric vehicle seat support die of claim 3, wherein the support frame is a stainless steel structure.
5. The electric vehicle seat support die with accurate blanking according to claim 1, wherein the stamping rod is arranged perpendicular to the second bending table and the second clamping table.
6. The precise electric vehicle seat support die of claim 1, wherein the outer shell is of an integrally formed structure.
7. The precise electric vehicle seat support die of claim 1, wherein the first bending station and the second bending station are stainless steel structural members.
8. The precise electric vehicle seat support die of claim 1, wherein the first clamping table and the second clamping table are stainless steel structural members.
9. The electric vehicle seat support die with accurate blanking according to claim 1, wherein the projection area of the top plate projected to the plane of the bottom plate is smaller than the projection area of the bottom plate projected to the plane of the bottom plate.
CN202021835905.8U 2020-08-28 2020-08-28 Accurate electric motor car seat support mould of blank Active CN212821926U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021835905.8U CN212821926U (en) 2020-08-28 2020-08-28 Accurate electric motor car seat support mould of blank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021835905.8U CN212821926U (en) 2020-08-28 2020-08-28 Accurate electric motor car seat support mould of blank

Publications (1)

Publication Number Publication Date
CN212821926U true CN212821926U (en) 2021-03-30

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021835905.8U Active CN212821926U (en) 2020-08-28 2020-08-28 Accurate electric motor car seat support mould of blank

Country Status (1)

Country Link
CN (1) CN212821926U (en)

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