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Design and test of an apparatus for transient measurements of the thermalconductivity and volumetric heat capacity of solids

机译:瞬态测量固体热导率和体积热容的设备的设计和测试

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Knowledge of the thermal conductivity (κ) of solids is crucial for all thermoelectric devices. A new approachin transient measurement to determine this value as well as electric conductivity (σ) and the Seebeck coefficient (S) ispresented here. This approach can be combined with current steady-state methods. A cylindrical sample is mountedbetween two heat-flux sensors that can be heated or cooled at their outer ends. The input signals defining the heatfluxes at the sensors can be any arbitrary function of time, although some waveforms yield more valid results. Themethod is evaluated by employing a one-dimensional numerical model and finding the best fit to extract the thermalconductivity (κ) of the sample as well as its volumetric heat capacity (cρ) . Trial measurements on an insulating (σ =1 × 1013 Sm-1) and a conducting sample (σ = 1 × 105 Sm-1) are presented and the results are in good agreementwith the literature and data obtained by a commercial laser-flash analysis system. Improvements in comparison topresent measurement methods are the direct determination of κ compared to other transient methods like laser-flashanalysis, shorter measurement times by acquiring κ(T) data in a single temperature approach, and simultaneous S andσ measurements.
机译:固体的导热系数(κ)的知识对于所有热电设备都至关重要。本文介绍了一种用于确定该值以及电导率(σ)和塞贝克系数(S)的瞬态测量新方法。该方法可以与当前的稳态方法相结合。圆柱形样品安装在两个热通量传感器之间,两个热通量传感器的外端可以加热或冷却。定义传感器处热通量的输入信号可以是时间的任意函数,尽管某些波形会产生更有效的结果。通过使用一维数值模型并找到提取样品的导热系数(κ)及其体积热容(cρ)的最佳方法来评估该方法。给出了对绝缘体(σ= 1×1013 Sm-1)和导电样品(σ= 1×105 Sm-1)的试验测量结果,其结果与文献资料和通过商业激光闪光分析获得的数据非常吻合系统。与目前的测量方法相比,改进之处在于,与其他瞬态方法(例如激光闪光分析)相比,直接确定κ值,通过单温度方法获取κ(T)数据可缩短测量时间,并同时进行S和σ测量。

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