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Liquid Cooling Battery Pack Liquid Cooling Plate new material choice

Publish Time: 2024-05-08
With the rapid development of electric vehicle technology, Liquid Cooling Battery Pack Liquid Cooling Plate is a core component of the battery thermal management system, and its performance directly affects the overall performance and safety of the battery pack. In the selection of liquid cooling plate materials, the introduction of new materials provides the possibility to improve heat dissipation performance, corrosion resistance and reduce manufacturing costs.

First of all, graphene, as a two-dimensional carbon nanomaterial, has extremely high thermal conductivity. The application of graphene materials in liquid cooling plates can significantly improve heat dissipation efficiency, allowing the battery pack to maintain a stable temperature under long-term high-load operation.

Secondly, carbon fiber composite materials have become excellent candidates for liquid cooling plate materials because of their lightweight, high strength, and high thermal conductivity. This material can not only effectively reduce the weight of the liquid cooling plate, but also improve the heat dissipation performance. Its corrosion resistance is also better than traditional metal materials.

In addition, some polymer materials such as polyimide (PI) and polytetrafluoroethylene (PTFE) are also considered for use in liquid cooling plates due to their excellent corrosion resistance, high temperature resistance and good processing properties. manufacture. These materials can maintain stable performance in harsh environments while reducing manufacturing costs.

In short, the application of new materials provides new solutions for improving the performance of Liquid Cooling Battery Pack Liquid Cooling Plate. New materials such as graphene, carbon fiber composites and polymer materials have shown advantages in heat dissipation performance, corrosion resistance and manufacturing cost, and are expected to become the mainstream choice of liquid cooling plate materials in the future.
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