|Product Name:||1.2W/M.K Thermal Conductivity Silicone Soft Thermal Conductive Pad||Thermal Conductivity:||1.2W/m.K|
|Composition:||Ceramic Filler + Silicone||Thickness:||0.5~12.0(mm)|
Practical Thermal Silicone Pad,
Ultrathin Thermal Silicone Pad,
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1.2W/M.K Thermal Conductivity Silicone Soft Thermal Conductive Pad
The thermal runaway of new energy vehicle battery is the key factor to determine its safety, service life and cost! The working temperature of lithium-ion battery affects its service life. When the battery temperature is between 10~30 ℃, improper temperature will cause rapid decay of battery life. The large-scale power battery makes it difficult for its internal heat to dissipate, and it is more likely that the local temperature rise is too high, thus further accelerating the battery aging and shortening the battery life. Battery thermal management system is one of the key technologies to ensure the safety and life of power batteries.
The main functions of the thermal management system include:
1. When the temperature of the battery system is too high, it can effectively dissipate heat to prevent thermal runaway accidents;
2. Preheat the battery when the temperature of the battery system is low, improve the battery temperature, and ensure the charging and discharging performance and safety at low temperature;
3. Reduce the temperature difference in the battery pack and prevent the battery from decaying too quickly at the high temperature position.
How can we achieve good heat conduction and dissipation effect?
The application opportunity of low hardness thermal conductive pad is coming. TP series thermal conductive silicone pad has a hardness of 40shore00. The sheet material can be cut according to the shape, and the thermal conductivity can reach up to 10.0 w/mk, which can achieve good thermal conductivity and heat dissipation effect. Its function is to fill the gap between the heat source and the radiator. It is a better product to replace the traditional binary heat dissipation system of heat conducting silicone grease and ceramic chips. The process thickness ranges from 0.5mm to 10.0mm. The product conforms to the European Union RoHS standard, and the working temperature is -40 ℃ ~200 ℃. Because it is particularly soft, it can better fill the gap, complete the heat transfer between the heat source and the heat dissipation part, increase the heat conduction area, and also play the role of shock absorption, insulation, sealing, etc. It can better meet the design requirements of miniaturization and ultra-thin equipment, and has a wide range of thickness application, especially suitable for automotive, display, computer, power supply and other electronic equipment industries.
|Composition||Ceramic Filler + Silicone||-|
|Thickness (mm)||0.5~12.0||ASTM d374|
|Density (g/cc)||2.3||ASTM D792|
|Hardness (Shore OO)||20±5||ASTM D2240|
|Tensile Strength(kn/m)||0.4||ASTM D624|
|Elongation %||52||ASTM D412|
|Breakdown Voltage(kv/mm)||≥6.5||ASTM D149|
|Dielectric Constant(@1mhz)||5.3||ASTM D150|
|Volume Resistivity(Ω.cm)||1.0*10^12||ASTM D257|
|Thermal conductivity(W/m.K)||1.2±0.1||ASTM D5470|
Contact Person: Jason Zhan