首页> 外文会议>International Conference on Environmental degradation of Materials in Nuclear Power Systems-Water Reactors >STRESS CORROSION CRACKING BEHAVIOR NEAR THE FUSION BOUNDARY OF DISSIMILAR WELD JOINT WITH ALLOY 182-A533B LOW ALLOY STEEL
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STRESS CORROSION CRACKING BEHAVIOR NEAR THE FUSION BOUNDARY OF DISSIMILAR WELD JOINT WITH ALLOY 182-A533B LOW ALLOY STEEL

机译:用合金182-A533B低合金钢的不同焊接接头融合边界附近的应力腐蚀开裂行为

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The stress corrosion cracking (SCC) behavior near the fusion boundary (FB) of a dissimilar weld joint with Alloy 182-A533B low alloy steel (LAS) in high-temperature oxygenated water doped with sulfate has been investigated, with a focus on the relationship between the SCC crack arrest/reinitiation behavior and the microstructural characteristics of the heat-affected zone (HAZ) in LAS adjacent to the FB. Cracks propagated perpendicular to the FB along the dendrite grain boundary in the dilution zone (DZ) of Alloy 182, and then spherical or crack-like oxides were formed in the HAZ of LAS adjacent to the FB; no obvious SCC susceptibility was observed in the non-HAZ region of LAS. Crack arrest occurred when spherical oxides formed in the LAS. Crack-like oxides tended to propagate along the prior austenite grain boundary in the coarsegrained HAZ (CGHAZ) of LAS. It has been suggested that the microstructure and continuity between the dendritic grain boundary in the DZ of Alloy 182 and the prior austenite grain boundary in the CGHAZ of LAS across the FB, that is, the continuity of the potential crack path played an important role in the arrest/reinitiation of SCC crack in the FB region. Above microstructural characteristics varied depending on the multiple heat cycles of the welding process.
机译:研究了掺杂硫酸盐的高温氧化水中的不同焊接接头的熔接边界(FB)附近的应力腐蚀裂缝(SCC)行为,浓缩了关系在与FB相邻的LAS中的SCC裂纹抑结/再加力和热影响区域(HAZ)的微观结构特征之间。沿着稀释区(DZ)的稀释区(DZ)中的倾角晶界垂直于FB垂直于FB,然后在与FB相邻的LA的HAZ中形成球形或裂纹状氧化物;在LAS的非HAZ区域中没有观察到明显的SCC敏感性。当在LAS中形成的球形氧化物时,发生裂缝停滞。裂缝状氧化物倾向于沿着LAS的甘露出的HAZ(CGHAZ)中的先前奥氏体晶界繁殖。已经提出,在FB的CGHAZ中,CGOOG 182中的树突状晶界与横跨FB的CGHAZ中的先前奥氏体晶界之间的微观结构和连续性,即潜在裂缝路径的连续性在FB区SCC裂缝的逮捕/加固。高于微观结构特性根据焊接过程的多个热循环而变化。

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