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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and insulating properties of epoxy/aluminum nitride composites used for thermal interface material
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Thermal and insulating properties of epoxy/aluminum nitride composites used for thermal interface material

机译:用于热界面材料的环氧/氮化铝复合材料的隔热性能

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We synthesized an epoxy matrix composite adhesive containing aluminum nitride (AlN) powder, which was used for thermal interface materials (TIM) in high power devices. The experimental results revealed that adding AlN fillers into epoxy resin was an effective way to boost thermal conductivity and maintain electrical insulation. We also discovered a proper coupling agent that reduced the viscosity of the epoxy-AlN composite by AlN surface treatment and increased the solid loading to 60 vol %. For the TIM sample made with the composite adhesive, we obtained a thermal conductivity of 2.70 W/(m K), which was approximately 13 times larger than that of pure epoxy. The dielectric strength of the TIM was 10 to 11 kV/mm, which was large enough for applications in high power devices. Additionally, the thermal and insulating properties of the TIM did not degrade after thermal shock testing, indicating its reliability for use in power devices.
机译:我们合成了包含氮化铝(AlN)粉末的环氧基复合材料粘合剂,该粘合剂被用于大功率设备中的热界面材料(TIM)。实验结果表明,在环氧树脂中添加AlN填料是提高导热性和保持电绝缘的有效方法。我们还发现了一种合适的偶联剂,该偶联剂通过AlN表面处理降低了环氧-AlN复合材料的粘度,并将固含量提高至60 vol%。对于使用复合胶粘剂制成的TIM样品,我们获得的热导率为2.70 W /(m K),约为纯环氧树脂的热导率的13倍。 TIM的介电强度为10到11 kV / mm,足以用于大功率设备。此外,TIM在热冲击测试后并未降低其隔热性能,这表明TIM在功率器件中的可靠性。

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