An explosion-proof protection structure of a large-capacity lithium battery
An explosion-proof protection, lithium battery technology, used in lithium batteries, secondary batteries, non-aqueous electrolyte batteries, etc., can solve problems such as large volume, lithium battery explosion, and battery heat dissipation, so as to improve the heat dissipation effect and improve the circulation effect. , to avoid the effect of poor heat dissipation
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Embodiment 1
[0034] The invention provides an explosion-proof protection structure of a large-capacity lithium battery, referring to figure 1 , Figure 8 , Figure 9, as a specific embodiment, it includes a main body 1, a battery accommodating chamber 10 disposed inside the main body 1, and a first chamber 11 and a second chamber 12 respectively disposed on opposite sides of the battery accommodating chamber 10, A plurality of heat conduction plates 101 are evenly spaced in the battery accommodation cavity 10, and a channel 102 communicating with the first cavity 11 and the second cavity 12 is arranged in the heat conduction plate 101, and the first cavity 11 A movable plate 13 is arranged inside, and the movable plate 13 is arranged parallel to the first side wall of the first cavity 11, and the first side wall is that the first cavity 11 is adjacent to the battery accommodating cavity 10 The side wall of the movable plate 13 is slidingly and sealingly engaged with the inner side wall o...
Embodiment 2
[0038] The present invention provides an explosion-proof protection structure for a large-capacity lithium battery. As a further preferred embodiment, the first cavity 11 is set above the battery accommodating cavity 10, and the second cavity 12 is set above the Below the battery accommodating chamber 10, the difference between it and Embodiment 1 is that the cooling liquid is provided with heat-conducting expansion particles 3, and the density of the heat-conducting expanding particles is not less than that of the cooling liquid when it is not expanded, and the density is not less than that of the cooling liquid when it is expanded. The density is smaller than the cooling liquid, and the thermally conductive expandable particles 3 can pass through the channel 102 when expanding.
[0039] refer to figure 1 , Figure 10 , as a specific embodiment, by adding thermally conductive expansion particles 3 in the cooling liquid, when the battery is not working or the temperature is l...
Embodiment 3
[0048] The present invention provides an explosion-proof protection structure of a large-capacity lithium battery. As a further improvement, refer to Figure 3-Figure 5 , which is different from Embodiment 2 in that: the valve assembly 23 also includes a first guide cylinder 232 and a second guide cylinder 233 arranged in parallel at intervals, and a first piston 2321 is slidably disposed in the first guide cylinder, so The second piston 2331 is slidably arranged in the second guide cylinder 233, and the first cavity of the first guide cylinder 232 located in the first piston communicates with the second cavity of the second guide cylinder located in the second piston. The side of the first piston 2321 facing away from the first cavity is provided with a first locking rod 2322 that can extend out of the first guide cylinder, and the first guide cylinder is located on the side away from the first piston. The cavity of the first chamber is filled with expansion fluid and communi...
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