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Development of Reference Materials for Thermal-Diffusivity Measurements by the Flash Method

机译:通过闪光法开发用于热扩散率测量的参考材料

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摘要

The thermal conductivity of solid materials used for thermal simulations and thermal designs can be obtained as the product of thermal diffusivity, specific heat capacity, and bulk density in many cases. The thermal diffusivity is usually measured by the flash method, and the specific heat capacity is usually measured by differential scanning calorimetry. In order to obtain reliable thermal conductivities for strict thermal design, it is necessary to measure the thermal diffusivity using the flash method, a well-validated apparatus. Reference materials are an effective means for validation of most practical measurement apparatus. For the flash method, isotropic graphite was selected as a candidate reference material. A batch of isotropic graphite samples was prepared and characterized in detail in order to be a certified reference material for thermal-diffusivity measurement. The detailed characterization ensures the traceability of the measurement results to the international system of units (SI). A convenient reference material for thermal conductivity was also obtained by using the known thermal-diffusivity measurements, specific heat capacity, and density of the material.
机译:在许多情况下,可以将用于热模拟和热设计的固体材料的热导率作为热扩散率,比热容和堆积密度的乘积。通常通过闪蒸法测量热扩散率,并且通常通过差示扫描量热法测量比热容。为了获得用于严格热设计的可靠热导率,有必要使用一种经过充分验证的仪器-闪光法来测量热扩散率。参考材料是验证大多数实际测量设备的有效手段。对于闪蒸法,选择各向同性石墨作为候选参考材料。制备了一批各向同性的石墨样品,并对其进行了详细的表征,以使其成为用于热扩散率测量的认证参考材料。详细的特性可确保将测量结果追溯到国际单位制(SI)。通过使用已知的热扩散率测量值,比热容和材料密度,还获得了一种方便的导热系数参考材料。

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