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An automatic processing equipment for battery parts

A technology for processing equipment and parts, which is applied in the field of automatic processing equipment for battery parts, can solve the problems of difficult partition collection, difficult debris cleaning, partition displacement, etc., to avoid displacement and improve the effect of removal.

Active Publication Date: 2021-08-06
CHONGQING VOCATIONAL INST OF ENG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, a cutter is usually used to cut the foam board, and debris will be generated during the cutting process. Due to the small weight of the debris, the debris is very easy to adhere to the cutter, machine tool, and the partition after cutting. The debris on the cutter will stick to the partition again when the cutter is in contact with the foam board. However, due to the small weight of the partition, the traditional negative pressure suction or positive pressure to form an air flow blows away The way of debris is easy to displace the partition, making it difficult to collect the partition, so it is more difficult to clean the debris

Method used

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  • An automatic processing equipment for battery parts
  • An automatic processing equipment for battery parts
  • An automatic processing equipment for battery parts

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] An automatic processing equipment for battery parts, such as figure 1 As shown, it includes a frame, a cutting unit, a dust removal unit and two support plates 1 , the two support plates 1 are horizontally arranged and welded on the frame, and a cutting gap 11 is provided between the two support plates 1 . The cutting unit includes a cutter 2 and a cutting driver. The bottoms of the two support plates 1 are welded with a first mounting block 12. The support plate 1 is provided with a mounting shaft 21 below the support plate 1. The cutting knife 2 is fixed on the mounting shaft 21 by a flat key. The upper end of the knife 2 is a cutting part, and the upper end of the knife 2 extends from the cutting slit 11 to the top of the support plate 1 . The front and rear ends of the installation shaft 21 run through two first installation plates respectively, and a bearing 22 is installed between the installation shaft 21 and the first installation plate. The installation method ...

Embodiment 2

[0043] On the basis of Example 1, such as image 3 As shown, the adsorption block 42 in this embodiment is L-shaped, and the corners of the adsorption block 42 can accommodate debris, increase the amount of debris that can be accommodated, and move more debris to the side near the negative pressure port 31, Further improve the recycling effect of debris.

Embodiment 3

[0045] On the basis of Example 2, such as Figure 4 As shown, the side of the adsorption block 42 in this embodiment close to the cutter 2 is glued with a friction block 43, the friction block 43 in this embodiment is made of rubber, and the side of the friction block 43 close to the cutter 2 is convex. Curved surface, and the curved surface is a smooth surface. The distance between the end of the friction block 43 close to the cutter 2 and the cutter 2 is 0.3 cm. When the cutter 2 is obviously deformed, it can slide relative to the friction block 43, causing the friction block 43 to be worn, which is convenient for workers to find the cutting edge in time. The deformation of the knife 2, so as to avoid large errors in the partition generated by cutting after the deformation of the cutter 2.

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Abstract

The invention relates to the field of battery processing, in particular to an automatic processing equipment for battery parts. It includes a cutting unit and a dust removal unit. The cutting unit includes a cutter and a cutting driver; the dust removal unit includes a negative pressure block, a negative pressure pipe and two adsorption components. The negative pressure block is provided with a negative pressure cavity, and the negative pressure block is provided with a negative pressure Pressure port; two adsorption assemblies are respectively located on both sides of the cutter, the adsorption assembly includes a bracket and an adsorption drive part, a number of adsorption blocks that can be opposite to the cutter are fixed on the bracket along the circumferential direction, and the bracket is close to the side of the cutter and away from the cutter. A first conductive rod and a second conductive rod are respectively provided on one side of the knife, and both the first conductive rod and the second conductive rod can be attached to the adsorption block and are respectively electrically connected with a static electricity generator and a static electricity eliminator. The automatic processing equipment for battery parts of the present invention can remove the debris generated by cutting, and avoid the displacement of the separator after cutting.

Description

technical field [0001] The invention relates to the field of battery processing, in particular to an automatic processing equipment for battery parts. Background technique [0002] The battery is equipped with a separator that acts as a buffer and separates the positive and negative poles to prevent battery leakage or damage caused by the connection of the positive and negative poles. The partitions are usually made of foam. During processing, it is necessary to cut the larger foam boards into smaller partitions and then install them. At present, a cutter is usually used to cut the foam board, and debris will be generated during the cutting process. Because the weight of the debris is small, the debris is very easy to adhere to the cutter, machine tool, and the partition after cutting. The debris on the cutter will stick to the partition again when the cutter is in contact with the foam board. However, due to the small weight of the partition, the traditional negative press...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B26D1/15B26D7/06B26D7/18B26D7/08B08B6/00B08B13/00B26D7/00B26D7/01
CPCB08B6/00B08B13/00B26D1/15B26D7/00B26D7/01B26D7/0608B26D7/088B26D7/1863
Inventor 胡银全黄崇富陈林詹善兵
Owner CHONGQING VOCATIONAL INST OF ENG