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首页> 外文期刊>International Journal of Thermophysics >Thermal Diffusivity Measurements of Candidate Reference Materials by the Laser Flash Method
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Thermal Diffusivity Measurements of Candidate Reference Materials by the Laser Flash Method

机译:激光闪光法测量候选标准物质的热扩散率

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摘要

The National Metrology Institute of Japan (NMIJ) in AIST has investigated the laser flash method in order to establish a thermal diffusivity standard for solid materials above room temperature. A uniform pulse-heating technique, fast infrared thermometry, and a new data analysis method were developed in order to reduce the uncertainty in thermal diffusivity measurements. The homogeneity and stability of candidate reference materials such as isotropic graphite were tested to confirm their qualification as thermal diffusivity reference materials. Since graphite is not transparent to both the heating laser beam and infrared light for thermometry, the laser flash method can be applied to graphite without black coatings. Thermal diffusivity values of these specimens with different thicknesses, were measured with changing heating laser pulse energies. A unique thermal diffusivity value can be determined for homogeneous materials independent of the specimen thickness, by extrapolating to zero heating laser pulse energy on the plot of apparent thermal diffusivity values measured with the laser flash method as a function of heating laser pulse energy.
机译:日本国家计量学会(NMIJ)在AIST中研究了激光闪光法,以便为室温以上的固体材料建立热扩散率标准。为了减少热扩散率测量的不确定性,开发了一种均匀的脉冲加热技术,快速的红外测温法和一种新的数据分析方法。测试了候选参比材料(如各向同性石墨)的均匀性和稳定性,以确认其作为热扩散参比材料的资格。由于石墨对加热的激光束和用于测温的红外光均不透明,因此可以将激光闪光方法应用于没有黑色涂层的石墨。通过改变加热激光脉冲能量来测量这些具有不同厚度的样品的热扩散率值。通过将用激光闪光法测得的视在热扩散率值随加热激光脉冲能量变化的函数外推至零加热激光脉冲能量,可以确定与样品厚度无关的均质材料的唯一热扩散率值。

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