首页> 外文会议>ASME Pressure Vessels and Piping conference >VALIDATION OF WEIGHT FUNCTION BASED PROCESS-ZONE MODEL FOR EVALUATION OF DELAYED HYDRIDE CRACKING INITIATION IN ZR-2.5NB PRESSURE TUBES
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VALIDATION OF WEIGHT FUNCTION BASED PROCESS-ZONE MODEL FOR EVALUATION OF DELAYED HYDRIDE CRACKING INITIATION IN ZR-2.5NB PRESSURE TUBES

机译:基于权函数的过程区模型的ZR-2.5NB压力管延迟氢化物开裂评估的验证

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In-service flaws in cold-worked Zr-2.5 Nb pressure tubes in CANDU~((1)) reactors are susceptible to a phenomenon known as delayed hydride cracking (DHC). The material is susceptible to DHC when there is diffusion of hydrogen atoms to a service-induced flaw, precipitation of hydrides on appropriately oriented crystallographic planes in the zirconium alloy matrix material, and development of a hydrided region at the flaw tip. The hydrided region could then fracture to the extent that a crack forms and DHC is said to have initiated. Examples of in-service flaws are fuel bundle scratches, crevice corrosion marks, fuel bundle bearing pad fretting flaws, and debris fretting flaws. These flaws are volumetric in nature. Evaluation of DHC initiation from the flaw is a requirement of Canadian Standards Association (CSA) Standard N285.8. This paper describes the validation of the weight function based process-zone model for evaluation of pressure tube flaws for DHC initiation. Validation was performed by comparing the predicted threshold load levels for DHC initiation with the results from DHC initiation experiments on small notched specimens. The notches in the specimens simulate axial in-service flaws in the pressure tube. The validation was performed for both un-irradiated and pre-irradiated pressure tube material.
机译:在Candu〜((1))中的冷加工ZR-2.5 NB压力管中的在式缺陷易于称为液体液体裂解(DHC)的现象。当氢原子扩散到服务诱导的缺陷时,该材料易于DHC,在锆合金基质材料中适当取向的晶体平面上的氢化物沉淀,以及在缺陷尖处的氢化区域的开发。然后,液体区域可以在裂缝形式和DHC被拟启动的程度上裂缝。在职缺陷的例子是燃料束划痕,缝隙腐蚀标记,燃料束轴承垫漏洞,以及碎屑膛线缺陷。这些缺陷本质上是体积的。从缺陷的DHC启动评估是加拿大标准协会(CSA)标准N285.8的要求。本文介绍了基于重量函数的处理区模型的验证,用于评估DHC启动的压力管缺陷。通过将DHC启动的预测阈值负载水平与小缺口样本上的DHC发起实验的结果进行比较来进行验证。标本中的凹口模拟压力管中的轴向在式缺陷。对非照射和预辐射的压力管材料进行验证。

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