首页> 外文会议>13th International Conference on Environmental Degradation of Materials in Nuclear Power Systems 2007 >MODEL CALCULATION OF CRACK GROWTH RATE COUPLED TO CREVICE CHEMISTRY FOR BWR PLANT LIFE MANAGEMENT
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MODEL CALCULATION OF CRACK GROWTH RATE COUPLED TO CREVICE CHEMISTRY FOR BWR PLANT LIFE MANAGEMENT

机译:压水堆寿命管理中裂纹化学与裂纹化学耦合的模型计算

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A calculation model for crack water chemistry-based crack growth rate (CBC) of intergranular stress corrosion cracking of structural materials in a boiling water reactor environment has been developed. This model was composed of three parts: (1) bulk water chemistry calculation, (2) crack water chemistry calculation, and (3) crack growth rate (CGR) calculation. Bulk water chemistry was calculated with a radiolysis model. In the CBC model, crack water chemistry calculation part can treat diffusion of chemical species, electrophoresis of ions, radiolysis, chemical reactions, and corrosions. Also, the CGR was calculated by metal dissolution rate at the crack tip which was driven by the cathodic reaction of oxidants. Crack tip dissolution rate was assumed to be governed by the square of the stress intensity factor. The CBC model could reproduce CGR dependence of sensitized type 304 stainless steel on electrochemical corrosion potentials and oxidant concentrations. When the CBC model was applied to evaluation of CGR on the core shroud, it was clarified that the crack water chemistry strongly affected the number of detected flaws.
机译:建立了沸水反应堆环境中结构材料晶间应力腐蚀裂纹的基于裂纹水化学的裂纹扩展速率(CBC)的计算模型。该模型由三个部分组成:(1)散装水化学计算,(2)裂化水化学计算,和(3)裂化生长率(CGR)计算。用放射分解模型计算大体积水化学。在CBC模型中,裂化水化学计算部分可以处理化学物质的扩散,离子电泳,辐射分解,化学反应和腐蚀。同样,CGR由裂纹尖端的金属溶解速率计算,该速率由氧化剂的阴极反应驱动。假定裂纹尖端的溶解速率受应力强度因子的平方控制。 CBC模型可以重现敏化304不锈钢对电化学腐蚀电势和氧化剂浓度的CGR依赖性。当将CBC模型应用于岩心覆盖层上的CGR评估时,可以清楚地看出,裂缝水的化学性质严重影响了检测到的缺陷的数量。

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