首页> 外文会议>International Conference on Environmental degradation of Materials in Nuclear Power Systems-Water Reactors >DEFORMATION MICROSTRUCTURES OF 30 dpa AISI 304 STAINLESS STEEL AFTER MONOTONIC TENSILE AND CONSTANT LOAD AUTOCLAVE TESTING
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DEFORMATION MICROSTRUCTURES OF 30 dpa AISI 304 STAINLESS STEEL AFTER MONOTONIC TENSILE AND CONSTANT LOAD AUTOCLAVE TESTING

机译:单调拉伸恒定载荷高压釜检测后30dPA AISI 304不锈钢的变形微观结构

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Irradiated AISI 304 stainless steel extracted from the Chooz A center filler assembly has been the subject of a number of studies. Previously the results of slow strain rate tensile and constant load autoclave tests of 30 dpa material have been reported. They showed an influence of temperature, strain rate and environment on the fracture behavior of the material. The irradiated microstructure and deformation microstructures of those materials following testing have now been examined by TEM. The findings suggest that substantial channel deformation was associated with the purely ductile fracture following SSRT testing in argon, while the intergranular fractures following SSRT in simulated PWR environment and constant load testing in both simulated PWR and argon environments were associated with very localized deformation primarily exhibiting alpha martensite. This possibility is discussed in the light of literature.
机译:辐照的AISI 304从Chooz中填充物组件中提取的不锈钢是许多研究的主题。以前,报道了慢应变率拉伸和恒定负荷高压釜检测的30dPA材料的结果。它们显示出温度,应变率和环境对材料的断裂行为的影响。现在检查了测试后的那些材料的辐照微观结构和变形微观结构。结果表明,在氩气中的SSRT测试之后,大量的通道变形与纯粹的延展性骨折相关,而模拟PWR环境中SSRT中的晶间骨折和模拟PWR和氩气环境中的恒定负载测试与主要展示α的非常局部变形相关联马氏体。根据文献讨论这种可能性。

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