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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Overall mechanical properties of fiber-reinforced metal matrix composites for fusion applications
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Overall mechanical properties of fiber-reinforced metal matrix composites for fusion applications

机译:用于熔融应用的纤维增强金属基复合材料的整体机械性能

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摘要

The high-temperature strength and creep properties are among the crucial criteria for the structural materials of plasma facing components (PFC) of fusion reactors, as they will be subjected to severe thermal stresses. The fiber-reinforced metal matrix composites are a potential heat sink material for the PFC application, since the combination of different material properties can lead to versatile performances. In this article, the overall mechanical properties of two model composites based on theoretical predictions are presented. The matrix materials considered were a precipitation hardened CuCrZr alloy and reduced activation martensitic steel 'Eurofer'. Continuous SiC fibers were used for the reinforcement, The results demonstrate that yield stress, ultimate tensile strenght, work hardening rate and creep resistance could be extensively improved by the fiber reinforcement up to fiber content of 40 vol.%. The influence of the residual stresses on the plastic behavior of the composites is also discussed. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 35]
机译:高温强度和蠕变性能是聚变反应堆面向等离子体组件(PFC)结构材料的关键标准,因为它们将承受严重的热应力。纤维增强的金属基复合材料是PFC应用的潜在散热材料,因为不同材料性能的组合可以带来多种性能。在本文中,基于理论预测,给出了两种模型复合材料的整体力学性能。考虑的基体材料是沉淀硬化的CuCrZr合金和还原活化的马氏体钢“ Eurofer”。连续的SiC纤维用于增强,结果表明,通过增强纤维含量达到40%(体积),屈服应力,极限抗拉强度,加工硬化率和抗蠕变性可以得到显着改善。还讨论了残余应力对复合材料塑性行为的影响。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:35]

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