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Grain Boundary Damage Evolution and SCC Initiation of Cold-Worked Alloy 690 in Simulated PWR Primary Water

机译:晶界损伤进化和SCC在模拟PWW初级水中冷轧合金690的启动

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Long-term grain boundary (GB) damage evolution and stress corrosion crack initiation in alloy 690 are being investigated by constant load tensile testing in high-temperature, simulated PWR primary water. Six commercial alloy 690 heats are being tested in various cold work conditions loaded at their yield stress. This paper reviews the basic test approach and detailed characterizations performed on selected specimens after an exposure time of ~1 year. Intergranular crack nucleation was observed under constant stress in certain highly cold-worked (CW) alloy 690 heats and was found to be associated with the formation of GB cavities. Somewhat surprisingly, the heats most susceptible to cavity formation and crack nucleation were thermally treated materials with most uniform coverage of small GB carbides. Microstructure, % cold work and applied stress comparisons are made among the alloy 690 heats to better understand the factors influencing GB cavity formation and crack initiation.
机译:通过在高温下恒定负荷拉伸试验研究了合金690中的长期晶界(GB)损伤的进化和应力腐蚀裂纹启动,在高温下进行了恒定的载荷,模拟PWWR初级水。在屈服应力的各种冷加工条件下测试六种商业合金690热量。本文审查了在〜1年的曝光时间后对所选样品进行的基本测试方法和详细表征。在某些高度冷的(CW)合金690热量的恒定应力下观察到晶间裂纹成核,发现与GB腔的形成有关。有些令人惊讶的是,最容易受腔形成和裂纹成核的热量是热处理的材料,具有最均匀的小GB碳化物覆盖。合金690热量中,制造微观结构,%冷加工和施加的应力比较,以更好地了解影响GB腔形成和裂纹引发的因素。

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