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Critical issues and current status of vanadium alloys for fusion energy applications

机译:聚变能源应用中钒合金的关键问题和现状

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Vanadium alloys are widely regarded as possessing desirable mechanical and physical properties for application as structural materials in fusion power systems. The bulk of the recent research on vanadium is focussed on ternaries containing 4-5% Cr and 4-10% Ti. The aim of this paper is to review significant results generated by the international research and development community on this alloy system and to highlight the critical issues that must be resolved before ahoy development can proceed to the next stage. Recent progress on understanding the physical metallurgy, fabrication and joining behavior, and compatibility with hydrogen and oxygen containing environments of unirradiated vanadium alloys is discussed. The effect of low-temperature neutron irradiation on mechanical properties and their relationship to the observed microstructure are briefly summarized. Current efforts to characterize the high-temperature mechanical properties, develop constitutive equations describing flow and fracture, and understand and mitigate the effects of non-metallic impurities on properties are presented. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 65]
机译:钒合金被广泛认为具有理想的机械和物理性能,可用作聚变动力系统中的结构材料。最近对钒的研究主要集中在含4-5%Cr和4-10%Ti的三元合金上。本文的目的是回顾国际研发界在该合金体系上产生的重要成果,并强调在合金开发进入下一阶段之前必须解决的关键问题。讨论了在了解物理冶金,制造和连接行为以及与未辐照钒合金的含氢和氧的环境相容性方面的最新进展。简要总结了低温中子辐照对机械性能的影响及其与观察到的微观结构的关系。介绍了当前为表征高温机械性能,开发描述流动和断裂的本构方程以及理解和减轻非金属杂质对性能的影响所做的努力。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:65]

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