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On the Shape of Stress Corrosion Cracks in Water-Cooled Nuclear Power Reactor Piping

机译:水冷核电力反应堆管道应力腐蚀裂纹的形状

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The evolution of the shape of surface cracks in sensitized Type 304 SS in Boiling Water Reactor (BWR) primary coolant at 288 °C was explored as a function of the electrochemical potential and stress intensity using the Coupled Environment Fracture Model (CEFM). The revised CEFM, which incorporates Shoji's model for calculating the crack tip strain rate and more advanced expressions for estimating the stress intensity factor for semi-elliptical surface cracks, provides more accurate prediction of the dependence of the crack growth rate on stress intensity factor and offers an alternative explanation for the development of semi-elliptical cracks than that provided by fracture mechanics alone. The evolution of the shape of surface cracks depends strongly upon environmental variables, such as the corrosion potential and solution conductivity, and the CEFM predicts that the minor axis of the ellipse should be oriented perpendicular to the surface, as is commonly observed, due to the dependence of the crack growth rate on the electrochemical crack length.
机译:表面裂纹的形状的致敏304型SS在沸水反应堆(BWR)在288℃的一次冷却剂的演变被探索作为使用环境耦合断裂模型(CEFM)的电化学电势和应力强度的函数。订正CEFM,其结合了庄司的用于计算裂纹尖端应变速率和用于估计半椭圆形表面裂纹的应力强度因子更高级表达式模型,提供了裂纹扩展速率的应力强度因子和优惠的依赖性的更准确的预测为半椭圆形的裂缝比由单独断裂力学提供的发展的另一种解释。表面裂纹的形状的演变时环境变量,如腐蚀电位和溶液导电性强烈依赖,并且CEFM预测,次要的椭圆的轴线应垂直于表面取向,如通常观察到的,由于在电化学裂纹长度裂纹扩展速率的依赖性。

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