logo
뉴스

The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.

중국 Dongguan Ziitek Electronic Materials & Technology Ltd. 인증
중국 Dongguan Ziitek Electronic Materials & Technology Ltd. 인증
열 전도성 패드는 이어 아주 좋은 보고 일하. 우리는 다른 열 전도성 패드를 위한 아무 필요도 지금 없습니다!

—— 피터 Goolsby

나는 2 년간 Ziitek와 협력했었습니다, 그들은 고품질 열 전도성 물자를 제공하고, 때 맞추어 납품은, 그들의 단계 변화 물자를 추천합니다

—— Antonello Sau

좋은 품질, 좋은 서비스. 당신의 팀은 항상 저희에게 도움과 결심을, 우리가 항상 좋은 파트너일 희망 줍니다!

—— Chris Rogers

제가 지금 온라인 채팅 해요
회사 뉴스
The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.
에 대한 최신 회사 뉴스 The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.

The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.


High temperatures are the "invisible killer" for the operation of charging piles. Equipment failures caused by poor heat dissipation account for over 40%, and this is the core bottleneck restricting the upgrade of charging piles to higher power and higher density. This not only leads to a reduction in charging efficiency by more than 30%, accelerates the aging of core components such as IGBT modules and capacitors, but in adverse circumstances, may also cause short circuits, fires and other safety accidents. The shortcomings of traditional heat-conducting materials have become increasingly prominent.
 

에 대한 최신 회사 뉴스 The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.  0

 

The mainstream heat-conducting materials currently used in charging piles have common limitations: the heat-conducting silicone grease tends to dry out and lose its effectiveness over time, unable to maintain long-term heat dissipation; the heat-conducting gaskets lack sufficient flexibility and are difficult to fit into the gaps of irregular components, resulting in heat conduction dead zones. However, TIF's two-component heat-conducting gel, with its dual advantages of "flexible adaptation and effective heat conduction", accurately addresses these problems and has become the key choice for upgrading the thermal management of charging piles.

 

에 대한 최신 회사 뉴스 The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.  1


As a paste-like flexible thermal conductive medium, thermal conductive gel does not require curing and has excellent fluidity. It can fill the tiny gaps between components and heat dissipation structures in all directions, even penetrating into the precise pin gaps, achieving seamless heat conduction and significantly reducing interface thermal resistance. After curing, it still maintains a 30%-50% high deformation rate, which can cope with the thermal expansion and contraction and vibration impact during equipment operation, and remains firmly attached without falling off for a long time, ensuring the stability of heat dissipation.

 

에 대한 최신 회사 뉴스 The heat dissipation of new energy vehicle charging piles has been upgraded, and TIF's two-component thermal conductive gel has become the key choice.  2


In high-power and complex scenarios, the comprehensive advantages of thermal conductive gel are more pronounced. For fast charging stations with power above 180kW, the thermal conductivity of high thermal conductive gel can reach 1.5-8.0W/m·K, effectively conducting the heat of the module and improving the heat dissipation efficiency by more than 40% compared to traditional materials. When adapting to liquid-cooled charging stations, it has both thermal conductive and sealing functions, preventing coolant leakage and being compatible with automated dispensing processes, thereby enhancing production efficiency. For outdoor conditions, the thermal conductive gel can withstand temperatures ranging from -45℃ to 200℃, is resistant to aging and UV radiation, and can easily adapt to protection standards, meeting the complex environmental requirements for outdoor installation of charging stations.

 

 



 

선술집 시간 : 2026-01-31 23:25:32 >> 뉴스 명부
연락처 세부 사항
Dongguan Ziitek Electronic Materials & Technology Ltd.

담당자: Ms. Dana Dai

전화 번호: 18153789196

회사에 직접 문의 보내기 (0 / 3000)