Wound battery with continuous tabs, asymmetric composite mesh electrodes and double-membrane safety valves

A composite mesh and safety valve technology, applied in the field of lead-acid batteries and wound lead-acid super batteries, can solve the problems of low grid material strength, low current conduction capacity, uneven current distribution, etc., and achieve heat dissipation performance. Good, improved mechanical strength and anti-vibration performance, improved electrical conductivity and the effect of adhesion

Inactive Publication Date: 2017-07-21
陈学琴
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to overcome the defects of low current conduction capacity, high internal resistance, uneven current distribution during charging and discharging of the existing wound lead-acid batteries, and poor performance in applications requiring high-rate charging and discharging; safety The explosion-proof film of the valve is a single-film structure, which is easy to cause safety accidents and has disadvantages such as low strength and difficult processing of lead foil as a grid material of a wound structure battery. The invention provides a double-film safety valve with asymmetrical composite mesh electrodes with continuous tabs Winding battery, which can make the current distribution even during the charging and discharging process, effectively improve the current conduction capacity, improve the mechanical strength and anti-vibration performance of the electrode, reduce the internal resistance of the electrode, and have high-rate charging and discharging characteristics of super capacitors The explosion-proof film with double-membrane structure of the safety valve makes the battery safer; the plate material is made of a mesh-like material woven from a high-strength fiber material with good conductivity as the base material of the plate. The strength of the board is greatly improved compared with the original lead foil and it is easy to process

Method used

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  • Wound battery with continuous tabs, asymmetric composite mesh electrodes and double-membrane safety valves
  • Wound battery with continuous tabs, asymmetric composite mesh electrodes and double-membrane safety valves
  • Wound battery with continuous tabs, asymmetric composite mesh electrodes and double-membrane safety valves

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Embodiment Construction

[0027] The technical solution of the present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0028] Such as Figure 1-16As shown, a continuous lug asymmetric composite mesh electrode double-film safety valve winding battery includes a battery case (5) and a battery cell (33), and is characterized in that: the battery cell (33) is composed of a positive electrode sheet (1) , the negative electrode sheet (2) and the diaphragm (3) between the positive electrode sheet and the negative electrode sheet are wound into a columnar body by the battery core reel (23), and the positive electrodes are respectively arranged on the two ends of the battery core (33) Current collector plate (6) and negative electrode current collector plate (7); said positive electrode sheet (1) is provided with a pole ear equal to the length of positive electrode sheet (1) at the top of the positive electrode collector plate (6), that is, the...

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Abstract

The invention provides a wound battery with continuous tabs, asymmetric composite mesh electrodes and double-membrane safety valves. The wound battery comprises a battery case and a battery core; the wound battery is characterized in that the battery core is a cylindrical body formed by winding a positive plate, a negative plate and a membrane located between the positive plate and the negative plate through a battery core reel; a positive collector plate and a negative collector plate are arranged at the tops of two ends of the battery core separately; a tab, namely a positive continuous tab, which is equal to the positive plate in length is arranged at the top end of one side, close to the positive collector plate, of the positive plate; a spiral groove body, namely a positive plate clamping groove is arranged in the corresponding collector plate; the negative plate is a composite mesh electrode; and a high-strength conductive fiber mesh is taken as a bottom plate and the bottom plate is provided with a metal oxide coating of ruthenium oxide and the like and a negative active material distributed in a strip. The wound battery has the beneficial effects that the current conducting capability is effectively improved through unique end-surface collector structures and composite mesh electrodes, meanwhile, the battery has high-rate charging and discharging characteristics of a super-capacitor, the double-membrane safety valves are safer and the performance of the battery is better.

Description

technical field [0001] The invention relates to a lead-acid storage battery, in particular to a high-power, high-rate discharge wound lead-acid super storage battery, which belongs to the technical field of storage battery processing and manufacturing. Background technique [0002] Traditional lead-acid battery manufacturing processes and technologies have gone through more than a century. In the course of more than a century of development, traditional production and processing technologies have been continuously innovated, and new technologies and equipment have been continuously adopted. [0003] At present, most of the traditional winding lead-acid batteries use single or multiple tabs as the current collection method. During the discharge process, the current distribution is uneven, and it is difficult to realize high-current charge and discharge. In addition, when charging and discharging with high current, due to the large internal resistance of the battery, it will...

Claims

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Application Information

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IPC IPC(8): H01M2/12H01M2/26H01M2/28H01M4/14H01M10/12H01M10/14H01M50/342H01M50/383H01M50/538H01M50/541
CPCH01M4/14H01M10/12H01M10/125H01M10/14H01M50/383H01M50/342H01M50/538H01M50/541Y02E60/10Y02P70/50
Inventor 陈学琴
Owner 陈学琴
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