Continuous Processing Method of Porous Current Collector Metal Material

A technology for metal materials and current collectors, which is applied in the field of continuous processing methods for porous current collector metal materials, can solve the problems of uneconomical efficiency, unsatisfactory arrangement, high failure rate, etc., achieves good perforation processing quality, and saves environmental protection processing costs. , The effect of simplifying the processing program

Inactive Publication Date: 2016-08-17
伦扬高科(韶关)有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] a. Utilizing a mold equipped with pins, the preset holes can be directly punched out on the sheet metal material through the drive of the stamping machine. Although this processing method is relatively simple and fast; A raised burr will be formed (the height of the burr is generally larger than the thickness of the material coated on the surface of the metal sheet material, so it is easy to cause a short circuit), forming a structural defect, and is limited by the clamping of each pin in the mold The space occupied by the holding and positioning structure requires an appropriate minimum distance and space between the pins. Therefore, the arrangement of the pins cannot meet the denser requirements. At the same time, using the pins to directly punch through the sheet metal material is also It will cause rapid wear of the pins, and the operation of replacing the pins is not only extremely cumbersome, but also greatly increases the production cost, which is not in line with economic benefits
[0008] b. Use (silk) screen printing to print UV ink on the metal sheet material, and corrode and perforate the unprinted part after photosensitive, and then remove the UV ink; although this processing method is conducive to mass production, but due to screen printing Due to technical limitations, in the process of screen printing with small aperture, it is easy to cause mesh blockage and cause adverse conditions, resulting in a high failure rate in the process of small aperture perforation. Furthermore, the use of the UV ink and Disposal will also increase the cost of follow-up treatment and environmental protection burden
[0009] In addition to the above comparison content, the needle nail and screen printing processing methods are limited by the positioning method and are only suitable for single-piece processing with a fixed area at a time, and cannot perform continuous processing of roll-to-roll or other continuous conveying, resulting in The (single-chip) finished products produced by it are also limited in application (it is easy to generate more waste, and its processing and production are also easy to stop and not sustainable), resulting in a lack of application

Method used

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  • Continuous Processing Method of Porous Current Collector Metal Material
  • Continuous Processing Method of Porous Current Collector Metal Material

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Experimental program
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Embodiment Construction

[0047] Please refer figure 1 As shown, it can be seen that the first embodiment of the present invention is applied to a roll-to-roll processing method. The main processing flow includes: a S10 step, a laser opening S20 step, an acid liquid electro-etching S30 step, and a post-processing S40 step. Steps and a winding S50 step; where the S10 step is used to gradually release the sheet-like metal material from a rolled state, or gradually release through the previous feeding device to continue to supply subsequent processing needs, or The sheet metal material is kept in a continuously conveyed feeding state during the processing time; then, the metal material can be subjected to a degreasing S11 step and a water washing S12 step as needed to clean the surface of the sheet metal material.

[0048] In the S20 step of laser drilling, a fiber laser is used in conjunction with a galvanometer controlled by a preset program, and the metal material can be punched with different apertures, s...

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Abstract

A porous current collector metal material continuous processing method comprises a to-be-processed long-strip flexible sheet-shaped metal material is allowed to maintain a continuous conveying state in a specific time; an optical fiber laser is utilized to cooperate with galvanometer operation, so that preset positions on the metal material can be controlled to be subjected to perforation processing; followed by, the metal material after perforation is allowed to pass through an acid solution to be subjected to electroetching processing, so that a roughening structure is formed on the surface of the metal material; then the surface of the metal material is subjected to antioxidant processing, so that a coating layer for preventing oxidation is formed and then dried; and finally, the metal material with the surface having the active material is directly rolled up or conveyed to a next procedure.

Description

Technical field [0001] The present invention relates to a continuous processing method of porous current collector metal material, in particular to a metal material processing method that is easy to process, can be produced flexibly and has low environmental protection processing cost. Background technique [0002] With the advancement of various material technologies, the structure of metal current collectors (aluminum foil, copper foil) used in lithium ion batteries (LiB), lithium ion capacitors (LiC) and super capacitors has also undergone great changes. [0003] Since the function of the above-mentioned metal current collector is to conduct the external output current (lithium ion battery, lithium ion capacitor and super capacitor), its structure must conform to the basic characteristics of low internal resistance (and easy penetration of ions), and to meet The above-mentioned demand characteristics, currently the more common practices are: [0004] 1. The metal flake (aluminum ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M4/66H01M4/80H01G11/70B23P15/00
CPCB23P15/00H01G11/68H01G11/70H01M4/661H01M4/80Y02E60/10
Inventor 黄浩翔
Owner 伦扬高科(韶关)有限公司
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