Helium effects on the creep and fatigue resistance of austenitic stainless steels at high temperatures

Herbert Schroeder, Wilto Kesternich, Hans Ullmaier
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引用次数: 73

Abstract

The effects of helium on the high temperature mechanical properties of austenitic stainless steel, also known as high temperature helium embrittlement, are reviewed. Special emphasis is given to such experimental data which simulate a fusion reactor environment best, i.e., to creep and low frequency fatigue experiments at high helium levels (≥ 100 appm He). Correlations between mechanical properties data and microstructural data are presented and compared to recently developed models for helium embrittlement. The presented data are critically assessed in the light of fusion reactor materials needs and some suggestions for future work are made.

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氦对奥氏体不锈钢高温蠕变和抗疲劳性能的影响
综述了氦对奥氏体不锈钢高温力学性能的影响,即高温氦脆。特别强调了在高氦水平(≥100 appm He)下的蠕变和低频疲劳实验,这些实验数据最能模拟聚变反应堆环境。力学性能数据和微观结构数据之间的相关性提出,并与最近开发的氦脆模型进行了比较。根据聚变反应堆材料的需求,对所提供的数据进行了严格的评估,并对今后的工作提出了一些建议。
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Preface Announcement Cryopumping for fusion reactors 2.1. Development of low activation Al alloys for the R-project 6. Research and development on the tritium handling technology in the R-project
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