首页> 外文会议>International Conference on Environmental degradation of Materials in Nuclear Power Systems-Water Reactors >INFLUENCE OF BULK AND SURFACE COLD WORK ON CRACKINITIATION AND CRACK GROWTH OF AUSTENITIC STAINLESS STEELS UNDER SIMULATED BWR ENVIRONMENT
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INFLUENCE OF BULK AND SURFACE COLD WORK ON CRACKINITIATION AND CRACK GROWTH OF AUSTENITIC STAINLESS STEELS UNDER SIMULATED BWR ENVIRONMENT

机译:散装与表面冷工作对模拟BWR环境下奥氏体不锈钢裂缝和裂纹生长的影响

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The influence of surface cold work (CW) strongly affects the crack initiation behavior of austenitic stainless steels under simulated light water reactor (LWR) environment. Within a parametric study crack initiation and crack growth rate (CGR) experiments were performed under simulated boiling water reactor (BWR) environment to determine critical conditions for plant components which might undergo crack formation and subsequent crack growth. Within this project AISI 347 was tested in solution annealed and/or several CW conditions. Comprehensive characterization in initial CW condition in comparison to as-tested material condition after e.g. exposure tests for crack initiation studies and CGR-experiments, clearly indicate the influence of localized plastic deformation within the grains of the material on the processes of crack initiation and propagation. With increasing amount of CW the addiction to intergranular cracking seems to increase due to high cumulative strains on active slip paths. Increased strength and reduced plasticity of the material in CW material condition superimpose the localized strengthening effects.
机译:表面冷加工(CW)的影响力强烈影响模拟光水反应器(LWR)环境下奥氏体不锈钢的裂纹启动行为。在参数研究裂纹中,在模拟沸水反应器(BWR)环境下进行裂纹开始和裂纹生长速率(CGR)实验,以确定可能经历裂缝形成和随后的裂纹生长的植物组分的关键条件。在该项目中,AISI 347在溶液退火和/或几种CW条件下进行了测试。初始CW条件的综合表征与如测试材料条件相比的初始CW条件。裂纹启动研究和CGR实验的曝光试验清楚地表明局部化塑性变形在材料的晶粒中对裂纹引发过程的影响。随着活性滑槽高累积菌株的增加,CW的增加量似乎增加了对晶间裂化的瘾似乎增加。在CW材料条件下提高了材料的强度和降低的可塑性叠加着局部强化效果。

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