Metal plate forming precision adjusting guide device

文档序号:1527777 发布日期:2020-02-14 浏览:28次 中文

阅读说明:本技术 金属板成型精密调节导向装置 (Metal plate forming precision adjusting guide device ) 是由 李廷 张金美 于 2019-12-10 设计创作,主要内容包括:一种金属板成型精密调节导向装置,包括引导座、调节块、若干塞尺及调节螺钉;引导座的中部沿长度方向贯穿开设有导缝,一金属板穿过导缝;导缝的一侧连通有调节槽,调节块的厚度小于调节槽的宽度,调节块位于调节槽中;引导座的一侧开设有与调节槽连通的螺孔,调节螺钉螺纹连接于螺孔中,调节螺钉的末端与调节块抵接;至少一个塞尺位于调节槽中且位于调节块远离调节螺钉的一侧。如此调节精度高。(A metal plate forming precision adjusting guide device comprises a guide seat, an adjusting block, a plurality of clearance gauges and adjusting screws; a guide slit is arranged in the middle of the guide seat along the length direction in a penetrating way, and a metal plate penetrates through the guide slit; one side of the guide seam is communicated with an adjusting groove, the thickness of the adjusting block is smaller than the width of the adjusting groove, and the adjusting block is positioned in the adjusting groove; one side of the guide seat is provided with a screw hole communicated with the adjusting groove, the adjusting screw is connected in the screw hole in a threaded manner, and the tail end of the adjusting screw is abutted to the adjusting block; at least one clearance gauge is arranged in the adjusting groove and on one side of the adjusting block far away from the adjusting screw. So the adjusting precision is high.)

1. The utility model provides a metal sheet shaping precision adjustment guider which characterized in that: comprises a guide seat, an adjusting block, a plurality of clearance gauges and adjusting screws; a guide slit is arranged in the middle of the guide seat along the length direction in a penetrating way, and a metal plate penetrates through the guide slit; one side of the guide seam is communicated with an adjusting groove, the thickness of the adjusting block is smaller than the width of the adjusting groove, and the adjusting block is positioned in the adjusting groove; one side of the guide seat is provided with a screw hole communicated with the adjusting groove, the adjusting screw is connected in the screw hole in a threaded manner, and the tail end of the adjusting screw is abutted to the adjusting block; at least one clearance gauge is arranged in the adjusting groove and on one side of the adjusting block far away from the adjusting screw.

2. A sheet metal forming precision adjustment guide apparatus as set forth in claim 1, wherein: the shape of adjustment tank and regulating block is "7" font, and one side that the adjustment tank is close to adjusting screw has the screw wall, and the bottom of one side that adjusting screw was kept away from to the adjustment tank has the feeler gauge wall, and the top of one side of keeping away from adjusting screw has the sheet metal wall, and the distance between feeler gauge wall and the screw wall is less than the distance between sheet metal wall and the screw wall, and the feeler gauge is located between feeler gauge wall and the regulating block.

3. A sheet metal forming precision adjustment guide apparatus as set forth in claim 1, wherein: the plurality of clearance gauges include a first clearance gauge with the thickness of 0.02mm, a second clearance gauge with the thickness of 0.03mm, a third clearance gauge with the thickness of 0.04mm, a fourth clearance gauge with the thickness of 0.05mm, a fifth clearance gauge with the thickness of 0.06mm and a sixth clearance gauge with the thickness of 0.10 mm.

Technical Field

The invention relates to the technical field of batteries, in particular to a metal plate forming precision adjusting and guiding device.

Background

In the production process of the battery, a metal plate with a specific width is required to be used, for example, as a metal bipolar plate of the battery. In the manufacturing process of the existing metal plate, due to the error existing in the machining process, the width of the metal plate is slightly different from the set width, and the adjusting precision of the existing mode for adjusting the width of the metal plate is poor.

Disclosure of Invention

In view of the above, the present invention provides a metal plate forming precision adjustment guiding device with high adjustment precision to solve the above problems.

A metal plate forming precision adjusting guide device comprises a guide seat, an adjusting block, a plurality of clearance gauges and adjusting screws; a guide slit is arranged in the middle of the guide seat along the length direction in a penetrating way, and a metal plate penetrates through the guide slit; one side of the guide seam is communicated with an adjusting groove, the thickness of the adjusting block is smaller than the width of the adjusting groove, and the adjusting block is positioned in the adjusting groove; one side of the guide seat is provided with a screw hole communicated with the adjusting groove, the adjusting screw is connected in the screw hole in a threaded manner, and the tail end of the adjusting screw is abutted to the adjusting block; at least one clearance gauge is arranged in the adjusting groove and on one side of the adjusting block far away from the adjusting screw.

Furthermore, the shapes of the adjusting groove and the adjusting block are both in a 7 shape, one side of the adjusting groove, which is close to the adjusting screw, is provided with a screw wall, the bottom of one side of the adjusting groove, which is far away from the adjusting screw, is provided with a feeler gauge wall, the top of one side of the adjusting groove, which is far away from the adjusting screw, is provided with a metal plate wall, the distance between the feeler gauge wall and the screw wall is smaller than the distance between the metal plate wall and the screw wall, and the feeler gauge is positioned between the feeler gauge wall and the.

Further, the plurality of feelers comprise a first feeler with the thickness of 0.02mm, a second feeler with the thickness of 0.03mm, a third feeler with the thickness of 0.04mm, a fourth feeler with the thickness of 0.05mm, a fifth feeler with the thickness of 0.06mm and a sixth feeler with the thickness of 0.10 mm.

Compared with the prior art, the metal plate forming precision adjusting and guiding device comprises a guiding seat, an adjusting block, a plurality of clearance gauges and adjusting screws; a guide slit is arranged in the middle of the guide seat along the length direction in a penetrating way, and a metal plate penetrates through the guide slit; one side of the guide seam is communicated with an adjusting groove, the thickness of the adjusting block is smaller than the width of the adjusting groove, and the adjusting block is positioned in the adjusting groove; one side of the guide seat is provided with a screw hole communicated with the adjusting groove, the adjusting screw is connected in the screw hole in a threaded manner, and the tail end of the adjusting screw is abutted to the adjusting block; at least one clearance gauge is arranged in the adjusting groove and on one side of the adjusting block far away from the adjusting screw. So the adjusting precision is high.

Drawings

Embodiments of the invention are described below with reference to the accompanying drawings, in which:

fig. 1 is a schematic view of a metal plate supply device having a metal plate forming precision adjustment guide device provided by the present invention.

Fig. 2 is a schematic perspective view of a metal plate forming precision adjustment guide device provided by the invention.

Fig. 3 is a schematic side view of a sheet metal forming precision adjustment guide apparatus provided by the present invention.

Fig. 4 is an enlarged schematic view of a portion a in fig. 3.

Fig. 5 is a schematic view of the feeler in fig. 2.

Detailed Description

Specific embodiments of the present invention will be described in further detail below based on the drawings. It should be understood that the description herein of embodiments of the invention is not intended to limit the scope of the invention.

Referring to fig. 1, a metal plate supplying apparatus includes a metal plate roll 10, a cutting material leveling mechanism 20, a metal plate forming precision adjusting guide 30 and a forming mechanism 40 according to the present invention.

The metal plate roll 10 is wound with a metal plate 100, and the cutting and leveling mechanism 20 is used to cut and level the metal plate 100 so that the metal plate 100 has a predetermined width and length.

The metal plate forming precision adjustment guide device 30 provided by the invention is used for precisely adjusting the width of a metal plate and guiding the metal plate 100 to the forming mechanism 40 for forming.

Referring to fig. 2 to 4, the precision adjusting and guiding device 30 for metal plate forming provided by the present invention includes a guiding seat 31, an adjusting block 34, a plurality of feelers 35 and an adjusting screw 36.

A guide slit 32 is horizontally formed in the middle of the guide seat 31 along the length direction, and the metal plate 100 passes through the guide slit 32. One side of the guide slit 32 is communicated with an adjusting groove 33, the thickness of the adjusting block 34 is smaller than the width of the adjusting groove 33, and the adjusting block 34 is positioned in the adjusting groove 33.

One side of the guide seat 31 is provided with a screw hole communicated with the adjusting groove 33, and the adjusting screw 36 is connected in the screw hole in a threaded manner. The end of the adjustment screw 36 abuts the adjustment block 34.

At least one feeler 35 is located in the adjustment slot 33 on the side of the adjustment block 34 remote from the adjustment screw 36.

In the present embodiment, the shapes of the adjustment groove 33 and the adjustment block 34 are both "7", a screw wall 331 is provided on a side of the adjustment groove 33 close to the adjustment screw 36, a feeler wall 332 is provided on a bottom of a side of the adjustment groove 33 far from the adjustment screw 36, a metal plate wall 333 is provided on a top of a side far from the adjustment screw 36, and a distance between the feeler wall 332 and the screw wall 331 is smaller than a distance between the metal plate wall 333 and the screw wall 331.

The feeler 35 is located between the feeler wall 332 and the adjustment block 34.

Referring to fig. 5, the plurality of feelers 35 have different thicknesses, such as a first feeler 351 having a thickness of 0.02mm, a second feeler 352 having a thickness of 0.03mm, a third feeler 353 having a thickness of 0.04mm, a fourth feeler 354 having a thickness of 0.05mm, a fifth feeler 355 having a thickness of 0.06mm, and a sixth feeler 356 having a thickness of 0.10 mm.

The first clearance gauge 351, the second clearance gauge 352, the third clearance gauge 353, the fourth clearance gauge 354, the fifth clearance gauge 355 and the sixth clearance gauge 356 can be combined at will, and the precise adjustment of the width within 0.02-0.3 mm is realized.

The width of the metal plate 100 can be adjusted by setting the thickness of the inserted feeler 35. After the metal plate 100 passes through the metal plate forming precision adjustment guide device 30 provided by the invention, the width is contracted, and because the metal plate 100 has certain deformation capacity, the redundant width is converted into slight increase in thickness, so that the width of the metal plate 100 meets the requirement of battery manufacture.

The height of the feeler 35 is greater than or equal to the distance from the bottom of the adjustment slot 33 to the top of the adjustment screw 36. So the stress is more uniform and the inclination of the adjusting block 34 is avoided.

Compared with the prior art, the metal plate forming precision adjusting and guiding device comprises a guiding seat 31, an adjusting block 34, a plurality of clearance gauges 35 and adjusting screws 36; a guide slit 32 is formed in the middle of the guide base 31 along the length direction, and a metal plate 100 penetrates through the guide slit 32; one side of the guide slit 32 is communicated with an adjusting groove 33, the thickness of the adjusting block 34 is smaller than the width of the adjusting groove 33, and the adjusting block 34 is positioned in the adjusting groove 33; one side of the guide seat 31 is provided with a screw hole communicated with the adjusting groove 33, an adjusting screw 36 is connected in the screw hole in a threaded manner, and the tail end of the adjusting screw 36 is abutted to the adjusting block 34; at least one feeler 35 is located in the adjustment slot 33 on the side of the adjustment block 34 remote from the adjustment screw 36. So the adjusting precision is high.

The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the scope of the present invention, and any modifications, equivalents or improvements that are within the spirit of the present invention are intended to be covered by the following claims.

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