首页> 外文会议>PVP2008;ASME pressure vessels and piping conference >DETERMINISTIC PREDICTION OF STRESS CORROSION CRACK GROWTH RATES IN HIGH TEMPERATURE WATER BY COMBINATION OF INTERFACE OXIDATION KINETICS AND CRACK TIP ASYMPTOTIC FIELD
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DETERMINISTIC PREDICTION OF STRESS CORROSION CRACK GROWTH RATES IN HIGH TEMPERATURE WATER BY COMBINATION OF INTERFACE OXIDATION KINETICS AND CRACK TIP ASYMPTOTIC FIELD

机译:界面氧化动力学和裂纹尖端渐近场的组合确定预测高温水中的应力腐蚀裂纹增长率

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Proper disposition of the environmentally assisted crack growth rate in terms of key engineering parameters is crucial for safe and economic long term operation of light water reactors. Accurately predicting stress corrosion crack growth rate requires the quantification of crack tip mechanics, crack tip oxidation kinetics and their interactions. Crack tip strain rate has been categorized as a fundamental parameter for stress corrosion cracking of austenitic alloys in light water reactor environments. Continuum mechanics is applied to quantify crack tip strain rate based on the crack tip asymptotic field. A general oxidation kinetics formulation is proposed based on solid state mass transport theory. Stress corrosion crack growth rates of austenitic alloys in high temperature water environments are formulated as a function of various engineering parameters by combination of interface oxidation kinetics and the crack tip asymptotic field. Recent experimental results of stress corrosion crack growth rates in simulated boiling water reactor and pressurized water reactor environments are analyzed and reflected in the model development and application. The importance of surface integrity on plant safety is emphasized. The plant material aging management methodology is applied to the recent cracking issues in light water reactors.
机译:就关键工程参数而言,正确布置环境辅助裂纹的扩展速率对于轻水反应堆的安全和经济长期运行至关重要。准确地预测应力腐蚀裂纹的生长速度需要量化裂纹尖端的力学,裂纹尖端的氧化动力学及其相互作用。裂纹尖端应变率已被归类为轻水反应堆环境中奥氏体合金应力腐蚀开裂的基本参数。应用连续力学基于裂纹尖端渐近场来量化裂纹尖端应变率。基于固态传质理论,提出了一种一般的氧化动力学公式。结合界面氧化动力学和裂纹尖端渐近场,将奥氏体合金在高温水环境中的应力腐蚀裂纹扩展速率确定为各种工程参数的函数。分析了模拟沸水堆和压水堆环境中应力腐蚀裂纹扩展速率的最新实验结果,并反映在模型开发和应用中。强调了表面完整性对工厂安全性的重要性。植物材料老化管理方法论已应用于轻水反应堆中最近出现的裂化问题。

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