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首页> 外文期刊>Journal of Electronic Materials >Influence of Temperature and Aging on the Thermal Contact Resistance in Thermoelectric Devices
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Influence of Temperature and Aging on the Thermal Contact Resistance in Thermoelectric Devices

机译:温度和老化对热电装置热接触电阻的影响

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During thermal design in the first phases development, thermoelectric systems, such as thermoelectric generators, the most important parameter affecting the performance is thermal resistance of the components. This paper focusses on the thermal contact resistance (TCR), analyzing the influence of aging and temperature on different thermal interface materials (TIMs), i.e., thermal paste, graphite and indium. In previous papers, TCR has been studied depending on parameters such as surface roughness, bonding pressure, thermal conductivity and surface hardness. However, in thermoelectric applications, a relevant aspect to consider when choosing a TIM is aging due to thermal stress. The exposure of this type of material to high temperatures for long periods of time leads to deterioration, which causes an increase in the TCR impairing the conduction of the heat flow. Therefore, there is a need to study the behavior of TIMs exposed to temperatures typical in thermoelectric generators to make a correct selection of the TIM. It has been observed that exposure to temperatures of around 180 degrees C induces a significant increase in the thermal impedance of the three TIMs under study, although this effect is much more relevant for thermal paste. The contact, comprising steel, thermal paste and ceramic, presents a 300% increase in the thermal impedance after 70 days of aging, whereas that exceeds 185% for the contact of aluminum, thermal paste and ceramic. In the tests with exposure temperature of 60 degrees C, there is no observed decrease in the thermal impedance.
机译:在第一阶段发育中的热设计期间,热电系统,例如热电发电机,影响性能的最重要参数是组件的热阻。本文侧重于热接触电阻(TCR),分析老化和温度对不同热界面材料(TIMS)的影响,即热浆,石墨和铟。在先前的论文中,已经研究了TCR,这取决于表面粗糙度,粘接压力,导热性和表面硬度等参数。然而,在热电应用中,在选择TIM时需要考虑的相关方面是由于热应力而衰老。这种类型的材料暴露于长时间的高温导致劣化,这导致TCR损害热流传导的TCR增加。因此,需要研究暴露于热电发电机中典型的温度的TIM的行为,以正确选择TIM。已经观察到,暴露于约180℃的温度诱导在研究中的三个时间的热阻抗的显着增加,尽管这种效果与热浆料要重要得多。含有钢,热浆料和陶瓷的接触,衰老后的热阻抗增加300%,而铝,热膏和陶瓷的接触超过185%。在曝光温度为60摄氏度的测试中,没有观察到的热阻抗降低。

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