首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The radiation swelling effect on fracture properties and fracture mechanisms of irradiated austenitic steels. Part I. Ductility and fracture toughness
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The radiation swelling effect on fracture properties and fracture mechanisms of irradiated austenitic steels. Part I. Ductility and fracture toughness

机译:辐射膨胀对辐照奥氏体钢的断裂性能和断裂机理的影响。第一部分延展性和断裂韧性

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The radiation swelling effect on the fracture properties of irradiated austenitic steels under static loading has been studied and analyzed from the mechanical and physical viewpoints. Experimental data on the stress-strain curves, fracture strain, fracture toughness and fracture mechanisms have been represented for austenitic steel of 18Cr-10Ni-Ti grade (Russian analog of AISI 321 steel) irradiated up to neutron dose of 150 dpa with various swelling. Some phenomena in mechanical behaviour of irradiated austenitic steels have been revealed and explained as follows: a sharp decrease of fracture toughness with swelling growth; untypical large increase of fracture toughness with decrease of the test temperature; some increase of fracture toughness after preliminary cyclic loading. Role of channel deformation and channel fracture has been clarified in the properties of irradiated austenitic steel and different tendencies to channel deformation have been shown and explained for the same austenitic steel irradiated at different temperatures and neutron doses. (c) 2016 Published by Elsevier B.V.
机译:从力学和物理的角度研究并分析了辐射膨胀对静态载荷下辐照奥氏体钢断裂性能的影响。用18Cr-10Ni-Ti级奥氏体钢(AISI 321钢的俄罗斯类似物)辐照至150 dpa的中子剂量,并进行了各种溶胀试验,得到了应力-应变曲线,断裂应变,断裂韧性和断裂机理的实验数据。已揭示并解释了奥氏体钢的一些力学行为现象,并解释如下:断裂韧性随着膨胀的增长而急剧降低;随着测试温度的降低,断裂韧性异常大幅度增加;初步循环加载后,断裂韧性有所提高。阐明了通道变形和通道断裂在辐照奥氏体钢的性质中的作用,并且对于在不同温度和中子剂量下辐照的同一奥氏体钢,已经显示并解释了不同的通道形变趋势。 (c)2016年由Elsevier B.V.发布

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