Thorn sheet for simulating short-circuit thermal runaway in lithium-ion battery, sample battery cell and method
A lithium-ion battery, internal short-circuit technology, applied in circuits, secondary batteries, non-aqueous electrolyte batteries, etc., can solve the problems of inability to accurately simulate thermal runaway and dependence of batteries
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Embodiment 1
[0035]The embodiment of the present invention: such asFigure 1 to Figure 3This embodiment proposes a piercing piece for simulating short-circuit thermal runaway in a lithium ion battery, which includes a metal piece 1 on which at least one pointed corner 2 extending outward is provided; Corner 2 is made of an alloy with temperature memory effect. Specifically, the sharp corner 2 is made of a memory alloy. It should be noted that an alloy with a temperature memory effect means that the shape of the alloy changes when a certain temperature is reached. Simply put, the alloy has one shape at room temperature, and when it reaches a certain high temperature, it will deform into another shape. Specifically, in this embodiment, the sharp corner 2 is located in the same plane as the metal sheet 1 at room temperature, and when the temperature reaches a certain high temperature, the sharp corner 2 will bend toward one side of the diaphragm.
Embodiment 2
[0043]Please refer toFigure 1 to Figure 3This embodiment proposes a sample cell for simulating short-circuit thermal runaway in a lithium-ion battery, which includes the stinger used to simulate short-circuit thermal runaway in a lithium-ion battery as described in Example 1, and also includes a positive electrode sheet 3. Negative plate 4 and separator 5. Specifically, with regard to the production of the sample cell, the production process of the sample cell only consists in adding a spike, which can be implemented by those skilled in the art.
[0044]Specifically, the positive electrode sheet 3, the separator 5, and the negative electrode sheet 4 are stacked in sequence, and the metal sheet 1 is arranged between the positive electrode sheet 3 and the separator 5; and is installed on the metal sheet 1. The sharp corner 2 on the upper side is located between the positive electrode sheet 3 and the separator 5, and the sharp corner 2 is set to be used for piercing after the temperature ...
Embodiment 3
[0048]Please refer toFigure 4 This embodiment proposes a method for simulating short-circuit thermal runaway in a battery, which includes the following steps, S1, attaching the spike as described in Example 1 to the positive electrode plate 3 and placing it on the positive electrode plate 3 and the separator Between 5, the battery is made; in specific implementation, multiple stab pieces can be placed. S2, arranging the temperature sensing wire 7 on the cell made in step S1 to form a sample cell; S3, placing the sample cell in a sealed environmental chamber while monitoring the voltage of the sample cell; S4, environmental protection The chamber is heated to make the temperature of the sample cell reach the deformation temperature of the sharp corner 2; S5, observe the temperature change of each temperature sensing wire 7 on the sample cell until the sample cell heats out of control. During the test, the sample cell is heated. When the heating temperature reaches the deformation tem...
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Abstract
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Application Information
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