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Oxidation Behavior around the Stress Corrosion Crack Tips of Alloy 600 under PWR Primary Water Environment

机译:PWR一次水环境下600合金应力腐蚀裂纹尖端周围的氧化行为

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摘要

Stress corrosion cracks in Alloy 600 compact tension specimens tested at 325℃ in a simulated primary water environment of pressurized water reactor were analyzed by analytical transmission electron microscopy and secondary ion mass spectroscopy (SIMS). From a fine-probe chemical analysis, oxygen was found on the grain boundary just ahead of the crack tip, and chromium oxides were precipitated on the crack tip and the grain boundary attacked by the oxygen diffusion, leaving a Cr/Fe depletion (or Ni enrichment) zone. The oxide layer inside the crack was revealed to consist of a double (inner and outer) layer. Chromium oxides existed in the inner layer, with NiO and (Ni,Cr) spinels in the outer layer. From the nano-SIMS analysis, oxygen was detected at the locations of intergranular chromium carbides ahead of the crack tip, which means that oxygen diffused into the grain boundary and oxidized the surfaces of the chromium carbides. The intergranular chromium carbide blunted the crack tip, thereby suppressing the crack propagation.
机译:通过分析透射电子显微镜和二次离子质谱(SIMS),分析了在压水反应堆模拟初级水环境中在325℃下测试的600合金致密拉伸试样中的应力腐蚀裂纹。通过细探针化学分析,在裂纹尖端之前的晶界发现了氧气,并且在裂纹尖端沉淀了铬氧化物,并且晶界受到氧气扩散的攻击,从而留下了Cr / Fe损耗(或Ni)浓缩)区域。裂纹内部的氧化物层显示为双层(内层和外层)。铬氧化物存在于内层中,NiO和(Ni,Cr)尖晶石存在于外层中。通过nano-SIMS分析,在裂纹尖端前的晶间碳化铬位置检测到氧气,这意味着氧气扩散到晶界并氧化了碳化铬表面。晶间碳化铬使裂纹尖端钝化,从而抑制了裂纹扩展。

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