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首页> 外文期刊>Journal of Pressure Vessel Technology >Unified Interpretation of Crack Growth Rates of Ni-base Alloys in LWR Environments
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Unified Interpretation of Crack Growth Rates of Ni-base Alloys in LWR Environments

机译:轻水堆场环境下镍基合金裂纹扩展速率的统一解释

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摘要

Primary water stress corrosion cracking (PWSCC) of vessel penetrations (VP) fabricated from nickel based alloys such as alloy 600 and alloy 182 weld metal has created a great demand for elucidation of the cracking mechanism and for development of life prediction technologies. The generalized FRI crack growth rate (CGR) formulation was proposed, based on a deformation/oxidation mechanism and a theoretical crack tip strain rate equation derived by the authors. The effects of crack tip oxidation and crack tip mechanics and of their interactions on crack growth can be quantified. Experimental and actual plant data of CGR for alloy 600 in PWR primary water, which are sometimes scattered in CGR-K diagrams, are interpreted with the generalized CGR formulation, emphasizing the effects of temperature, K, yield strength and variations of K with time. It is suggested that it is essential to determine the type of dependency of CGR on K for accurate flaw disposition. The generalized formulation provides a unique parameter for interpreting CGRs as well as a unified method for predicting CGRs within a narrow scattered band even under various testing parameters, which is the basis for accurately predicting component life.
机译:由镍基合金(例如合金600和182焊接金属)制成的容器焊缝(VP)的一次水应力腐蚀开裂(PWSCC)对阐明开裂机理和发展寿命预测技术提出了很高的要求。基于变形/氧化机理和作者推导的理论裂纹尖端应变速率方程,提出了广义的FRI裂纹扩展速率(CGR)公式。可以量化裂纹尖端氧化和裂纹尖端力学及其相互作用对裂纹扩展的影响。压水堆一次水中600合金CGR的实验和实际工厂数据有时会分散在CGR-K图中,并通过广义CGR公式进行解释,强调温度,K,屈服强度和K随时间变化的影响。建议必须确定CGR对K的依赖性类型,以进行精确的缺陷处理。通用的公式提供了用于解释CGR的唯一参数,以及即使在各种测试参数下也可以在狭窄的散射带内预测CGR的统一方法,这是准确预测组件寿命的基础。

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