An efficient method for screening self-discharging batteries

A self-discharge and battery technology, applied in sorting and other directions, can solve the problems of easy misjudgment of non-self-discharge batteries, difficult detection of self-discharge batteries, unscientific self-discharge screening methods, etc. , the effect of low overall cost

Active Publication Date: 2018-05-11
杭州师腾新能源科技有限公司
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  • Abstract
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Problems solved by technology

[0004] The present invention mainly solves the technical problem that the original lithium-ion battery self-discharge screening method is unscientific, and there are serious deficiencies in principle and technology, which lead to easy misjudgment of non-self-discharge batteries, but difficult detection of real self-discharge batteries; provides a A method for effectively screening self-discharging batteries, which is more scientific and can more accurately screen out self-discharging lithium-ion batteries, thereby ensuring excellent electrochemical performance and safety performance in the subsequent use of batteries

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  • An efficient method for screening self-discharging batteries

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Embodiment

[0024] Example: In this example, an effective method for screening self-discharge batteries is to perform self-discharge screening on a 20Ah lithium-ion battery with a soft package of nickel cobalt manganate (523) / artificial graphite system, including the following steps:

[0025] ①Using low current charging method to determine the inflection point of the battery's low voltage state:

[0026] a. At room temperature T1, use charging and discharging equipment to discharge multiple batteries that are normally produced at 100mA to empty (large current can be used for early discharge) to obtain the total rated capacity of the battery;

[0027] b. At room temperature T1, use a charging and discharging device to charge each battery at 100mA for 1 hour, let stand for 0.5 hour, measure battery voltage OCV, then charge at 100mA for 1 hour, stand for 0.5 hour, measure battery voltage OCV, so Cycle 30 times, each time the charged capacity divided by the battery's total rated capacity value is th...

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Abstract

The invention relates to a method for effectively screening self-discharging batteries. The method comprises the following steps: (1) determining low-voltage-state voltage knee points of batteries by using a trickle charge method; (2) carrying out charging and discharging on the batteries, allowing the voltage of the batteries to be finally located at the low-voltage-state voltage knee points, and after the voltage of the batteries tends to be stable, measuring and recording the voltage OCV1 of each battery; (3) storing the batteries at a set temperature for a period of time and measuring and recording the voltage OCV2 of each battery; and (4) calculating the voltage drop value delta V of each battery, wherein delta V satisfies the equation that delta V = OCV1 - OCV2, and if the voltage drop value delta V of a battery exceeds a set value, the battery is a self-discharging battery need to be screened out. The method provided by the invention is more scientific, accords with principles, can more accurately screen out self-discharging lithium ion batteries and reduces irreversible capacity loss of batteries in the phase of screening of self-discharge; thus, excellent electrochemical performance and safety performance of batteries in subsequent usage are guaranteed.

Description

Technical field [0001] The invention relates to the field of battery manufacturing, in particular to a method for effectively screening self-discharged batteries. Background technique [0002] The self-discharge of lithium-ion batteries refers to the phenomenon that the voltage of the battery automatically drops during the open-circuit standing process. Among the electrodes of various systems, the self-discharge of lithium-ion batteries is inevitable. The self-discharge of lithium-ion batteries can be divided into two types according to whether the capacity can be restored after the loss: reversible capacity loss, which means that the capacity can be restored after recharging; irreversible capacity loss, which means that the capacity cannot be restored. [0003] There are many factors that affect the degree of self-discharge, which can be roughly divided into: the preparation process of the pole piece and the battery, the nature and concentration of the electrolyte, the storage tem...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B07C5/344
CPCB07C5/344
Inventor 聂亮厉蒋左华通
Owner 杭州师腾新能源科技有限公司
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