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首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >Failure Behavior of Sensitized SUS304 Stainless Steel with Small Surface Pre-Crack under Constant Load Condition in Simulated BWR Environment
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Failure Behavior of Sensitized SUS304 Stainless Steel with Small Surface Pre-Crack under Constant Load Condition in Simulated BWR Environment

机译:在模拟BWR环境中恒定载荷条件下敏化的具有小表面预裂纹的SUS304不锈钢的失效行为

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Small surface intergranular cracks similar to those detected in the heat affected zone of the welded components of primary water recirculation loop for boiling water reactor (BWR) were introduced on the surface of sensitized SUS304 stainless steel by using a fretting fatigue technique, where multiple parallel small surface cracks in the localized fretting slip region were nucleated. Constant load tests at various initial stress intensity factors (K_(i)) were then carried out in 288°C, 7.3MPa pure water, which is the operating condition for BWR, to investigate failure behavior of this material under constant load condition. From the results, it was speculated that the K_(ISCC) for small surface crack was lower than 4.7MPa·m~(1/2), which was significantly low compared to that of long crack (10-20 MPa·m~(1/2)).
机译:通过微动疲劳技术,在敏感的SUS304不锈钢表面上引入了类似于在沸水反应堆一次水循环回路(BWR)的一次水循环回路焊接部件的热影响区中检测到的细小晶间裂纹,其中多个平行小局部微动滑移区域的表面裂纹成核。然后在288°C,7.3MPa纯水(BWR的运行条件)下以各种初始应力强度因子(K_(i))进行恒载荷测试,以研究该材料在恒载荷条件下的破坏行为。由结果可知,小表面裂纹的K_(ISCC)低于4.7MPa·m〜(1/2),与长裂纹(10-20 MPa·m〜( 1/2))。

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