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Thermal properties of pure tungsten and its alloys for fusion applications

机译:纯钨及其合金的热学性能

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Tungsten is a promising candidate for plasma-facing materials in a fusion reactor, and several research studies have been conducted to improve the mechanical properties of pure W. However, the thermal properties are also important characteristics of plasma-facing materials. In this study, the thermal properties of pure W and its alloys were measured, and the effect of alloying on the thermal properties of pure W was investigated. Potassium-bubble (K-bubble) dispersion, which is one of the major methods utilized to improve the mechanical properties of W, did not affect the thermal diffusivity and conductivity of pure W. On the other hand, the presence of rhenium, which is major alloying element of W, affected the absolute values and the temperature dependence of thermal diffusivity and conductivity. The effect of alloying on specific heat and the anisotropy in thermal diffusivity of pure W and its alloys were also investigated. Measurements of the specific heat showed that K-bubble dispersion and Re addition had insignificant effects on the values obtained for pure W. Anisotropy in thermal diffusivity was not observed, and the effect of anisotropic grain structure and alloying was insignificant.
机译:钨是聚变反应堆中面向等离子体的材料的有希望的候选者,并且已经进行了若干研究来改善纯钨的机械性能。然而,热性能也是面向等离子体的材料的重要特性。在这项研究中,测量了纯钨及其合金的热性能,并研究了合金化对纯钨的热性能的影响。钾气泡(K气泡)分散液是提高W的机械性能的主要方法之一,它不会影响纯W的热扩散率和电导率。另一方面,is的存在是W的主要合金元素影响了热扩散系数和电导率的绝对值和温度依赖性。还研究了合金化对纯W及其合金的比热和各向异性的热扩散系数的影响。比热的测量表明,K气泡的分散和Re的添加对纯W的值影响不大。没有观察到热扩散率的各向异性,各向异性晶粒结构和合金化的影响也很小。

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