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Strain rate dependence of tensile properties of tungsten alloys for plasma-facing components in fusion reactors

机译:聚变反应堆中面向等离子体部件的钨合金拉伸性能的应变率依赖性

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The strain rate dependence of tensile properties such as yield stress and fracture strain of W-3%Re and K doped W-3%Re plates in the temperature range from room temperature (RT) to 300 degrees C was investigated in this work. The examined W alloy plates were fabricated by the same process and with the same reduction ratios. The yield stress of W-3%Re changed significantly with increasing strain rate as compared to K-doped W-3%Re. The strain rate sensitivity of W-3%Re was decreased by K-bubble dispersion. The low-temperature strength and ductility of W-3%Re was improved by K-bubble dispersion, although the fracture strain of K-doped W-3%Re was lower than that of W-3%Re at 200 and 300 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,研究了在室温(RT)至300摄氏度的温度范围内W-3%Re和K掺杂的W-3%Re板的拉伸性能(如屈服应力和断裂应变)与应变率的关系。所检查的W合金板是通过相同的工艺和相同的压缩比制造的。与掺K的W-3%Re相比,W-3%Re的屈服应力随应变率的增加而显着变化。 K气泡分散降低了W-3%Re的应变速率敏感性。尽管在200和300摄氏度时掺K的W-3%Re的断裂应变低于W-3%Re的断裂应变,但通过K气泡分散可以改善W-3%Re的低温强度和延展性。 (C)2015 Elsevier BV保留所有权利。

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