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Intragranular thermal transport in U-50Zr

机译:U-50ZR的形状热传输

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摘要

A thermoreflectance method was used to measure intragranular thermal diffusivity and conductivity of samples having a composition of U-50 wt%Zr (U-50Zr). Three phases at this composition were investigated: the high temperature gamma phase, the low temperature delta phase, and the metastable omega phase. This approach uses a tightly focused laser to inject micron scale thermal waves and a second tightly focused laser to monitor the temperature distribution. The thermal properties are extracted by comparing experimental temperature profiles to an analytical heat diffusion model. The probe laser can monitor the temperature field in orthogonal directions along the surface of the sample and is well suited to measure thermal anisotropy. We show that the d phase exhibits significant thermal anisotropy. The gamma phase has the highest thermal conductivity. The higher conductivity of the gamma phase is thought to be due to the presence of Zr precipitates that slightly change the stoichiometry of the gamma matrix. The highly disordered omega phase appears to be thermally isotropic and has a lower conductivity than the delta phase. Both observations are likely due to the presence of delta domains that reside between u domains. This supposition is supported by the presence of thermal heterogeneities that appear as noise in the measured signals. (C) 2020 Elsevier B.V. All rights reserved.
机译:热反射法用于测量具有U-50wt%Zr(U-50Zr)的组成的样品的腔内热扩散和电导率。研究了该组合物的三个阶段:高温γ相,低温δ相和亚稳ω相。该方法使用紧密聚焦的激光来注入微米级热波和第二紧密聚焦的激光器以监测温度分布。通过将实验温度曲线与分析热扩散模型进行比较来提取热性质。探针激光可以沿着样品表面监测正交方向上的温度场,并且非常适合测量热各向异性。我们表明D相表现出显着的热各向异性。伽马相具有最高的导热率。认为γ相的导电性较高,由于Zr沉淀物的存在,略微改变γ基质的化学计量。高紊乱的ω相似乎是热各向同性的并且具有比δ相的导电率较低。这两种观察都可能是由于驻留在U域之间的Delta域的存在。通过在测量信号中出现作为噪声的热异质性存在,支持该假设。 (c)2020 Elsevier B.v.保留所有权利。

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