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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Understanding the thermal conductivity of pristine W and W-Re alloys from a physics-based model
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Understanding the thermal conductivity of pristine W and W-Re alloys from a physics-based model

机译:了解基于物理学的模型的原始W和W-Re合金的热导率

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摘要

Tungsten (W) and tungsten-rhenium (W-Re) alloys are considered as the preferred plasma facing materials and structure materials for advanced fusion reactors. Thermal conductivity is one of the critical concerns for their materials applications. Although the steady-state heat transfer model can be utilized to evaluate the thermal conductivity variation in a traditional way, the thermal parameters of the material must be known beforehand. However, there are rare studies on the role of phonon and electron scattering mechanisms over a wide temperature range during the thermal transport process. In this paper, a physics-based model is established to predict the thermal conductivities of pristine W and W-xRe alloys (x = 1, 3, 5, 10, 25 wt%) from 300 to 1200 K. The model, which contains various scattering mechanisms, can be used to assess the effects of dislocation, grain size and solute rhenium on the total thermal conductivity. The temperature-dependent thermal conductivity predicted by the physics-based model agrees well with the reported data. Our simulation results reveal that 10(10) - 10(13) m(-2) dislocation densities in tungsten has almost no impact on the change of thermal conductivity, while an obvious decrease is observed at temperature below 400 K if dislocation density exceeds 10(14) M-2. Both small grain size and more solute rhenium in W-Re alloy can severely degrade the ability of heat transport. (C) 2019 Elsevier B.V. All rights reserved.
机译:钨(W)和钨 - 铼(W-RE)合金被认为是用于先进熔融反应器的优选等离子体面对材料和结构材料。导热性是其材料应用的重要问题之一。尽管可以利用稳态传热模型以传统方式评估导热率变化,但是必须预先已知材料的热参数。然而,在热运输过程中,存在关于声子和电子散射机制在宽温度范围内的作用的罕见研究。在本文中,建立了基于物理学的模型,以预测初步W和W-XRE合金的热导体(x = 1,3,5,10,25wt%),从300〜1200k.含有的模型各种散射机制可用于评估位错,晶粒尺寸和溶质铼对总热导率的影响。基于物理的模型预测的温度相关的导热率与报告的数据一致。我们的模拟结果表明,钨中的10(10) - 10(13)米(-2)位脱位密度几乎没有对导热系数的变化影响,而如果位错密度超过400k,则在低于400 k的温度下观察到明显的减少(14)M-2。在W-Re合金中的小粒度和更溶质铼都可以严重降低热传输能力。 (c)2019 Elsevier B.v.保留所有权利。

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