Long-life soft-pack battery thermal control device

A soft-pack battery and thermal control technology, which is applied in the direction of batteries, secondary batteries, battery pack components, etc., can solve the problems of insufficient cooling water resistance and corrosion resistance, and easy corrosion and perforation.

Pending Publication Date: 2017-11-14
谢彦君
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Under the premise of taking into account the forming ability of aluminum-plastic film and aluminum foil, at the same time, the aluminum-plastic film used for packaging batteries (battery) in the prior art is resistant to antifreeze coolant (abbreviated as antifreeze, whose main components are ethylene glycol and water) or antifreeze The defect of insufficient corrosion resistance of cooling water, that is, the defect of being easily corroded and perforated, the present invention provides an aluminum-plastic composite film (hereinafter referred to as aluminum-plastic film) that can be used for lithium-ion secondary battery packaging, which has higher Coolant corrosion resistance

Method used

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  • Long-life soft-pack battery thermal control device
  • Long-life soft-pack battery thermal control device
  • Long-life soft-pack battery thermal control device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0098] as attached figure 1 An aluminum-plastic film is provided, which includes an aluminum foil layer 1 and plastic layers 2 and 3 compounded on both sides of the aluminum foil layer, wherein the aluminum foil layer 1 is composed of a 3-series aluminum alloy aluminum foil layer 7 (core material) and 7 It is formed by compounding the aluminum alloy aluminum foil layer 6 (leather material). For example, 3003 aluminum alloy and 7072 aluminum alloy are used for compounding, and the 7072 aluminum alloy layer 6 is compounded on the outside of the 3003 aluminum alloy layer 7 . In other words, the aluminum-plastic film is formed by sequentially stacking a heat-sealing layer, a 3003 aluminum foil layer, a 7072 aluminum foil layer and a nylon layer, wherein the aluminum foil layer and the plastic layer are bonded with a traditional adhesive. In other words, the layers of the aluminum-plastic film from the inside to the outside are: heat-sealing layer, adhesive layer, 3003 aluminum fo...

Embodiment 2

[0104] as attached figure 2 A second aluminum-plastic film is provided, which includes an aluminum foil layer 1 and a thermoplastic resin film layer 3 composited inside the aluminum foil layer, wherein the aluminum foil layer is a composite layer aluminum foil, and the aluminum foil layer contains a core material and is located outside the core material The corrosion potential of the skin material of the aluminum foil layer is lower than that of the core material. Further, the core material of the aluminum foil layer is formed of corrosion-resistant aluminum alloy or pure aluminum. For example, the composite aluminum foil layer 1 is formed by compounding the 3-series aluminum foil layer 7 (such as 3003) and the 7-series aluminum foil layer 6 (such as 7072). Only the inner side of the aluminum foil layer 1 is compounded with a thermoplastic resin film layer 3 (also called a heat-sealing layer 3, such as CPP), without an external nylon protective layer. Compared with the alum...

Embodiment 3

[0107] This embodiment introduces the battery using the above-mentioned aluminum-plastic film and the application of the battery. A kind of pouch battery is provided, comprising electrode material and polymer electrolyte and aluminum-plastic film for external wrapping, wherein, the pouch battery adopts the aluminum-plastic film wrapping that comprises the composite layer aluminum foil of sacrificial anode function, as embodiment 1 or The composite aluminum alloy aluminum foil in Example 2, that is, the aluminum foil is made of 3003 aluminum alloy core material and 7072 aluminum alloy skin material is compounded on the outside. After the pouch battery is packaged with the above-mentioned aluminum-plastic film that is resistant to immersion and corrosion in the antifreeze coolant, the pouch battery can be soaked in the antifreeze coolant, so that it can directly exchange heat with the antifreeze coolant. Such as image 3 As shown, after the pouch battery 11 is sealed with the m...

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Abstract

The invention relates to a soft-pack battery thermal control device, in particular to a soft-pack battery thermal control device which can be soaked into cooling water. Furthermore, in view of the defect that the anticorrosion performance of packaging materials for batteries is not inadequate in the prior art, the invention provides a corresponding packaging material; the packaging material is made from an aluminum foil layer resistant to cooling water corrosion and a plastic layer arranged on the surface of the aluminum foil layer.

Description

technical field [0001] The invention relates to a thermal control device for a pouch battery, in particular to a thermal control device for a pouch battery that can be immersed in cooling water, such as a water cooling system that can be used in the field of vehicle power batteries and energy storage batteries. Background technique [0002] Thermal management technology is one of the core technologies of soft-pack power batteries. There have been many thermal management technical solutions and efforts in this field, but thermal management is still one of the bottlenecks restricting the development of this industry. The demand for efficient thermal management Still very urgent. Most of the existing pouch battery cooling methods are air cooling, oil cooling and water cooling; for example, the water cooling scheme introduced in CN201210016348.0 uses a water cooling plate or cooling tube to contact the battery to exchange heat, and this heat exchange method The contact thermal ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M2/02H01M2/10H01M10/613H01M10/625H01M10/627H01M10/6557H01M10/6568B32B15/20B32B15/08B32B15/04B32B15/088B32B7/12B32B7/06B32B27/34B32B27/06B32B33/00H01M50/105H01M50/119H01M50/121H01M50/124H01M50/128H01M50/129H01M50/136H01M50/211
CPCH01M10/613H01M10/625H01M10/6555H01M10/6557H01M10/6567B32B15/088B32B15/20B32B33/00C22C21/00C22C21/02C22C21/10H01M10/627H01M10/6568B32B7/06B32B7/12B32B15/043B32B15/08B32B27/06B32B27/34B32B2457/10B32B2457/18B32B2307/714B32B2307/50H01M2220/10H01M2220/20H01M50/124H01M50/1245H01M50/105H01M50/129H01M50/211H01M50/128H01M50/119H01M50/136H01M50/121H01M10/647Y02E60/10
Inventor 不公告发明人
Owner 谢彦君
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