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Effects of dendrite axis and fusion boundary on stress corrosion cracking of ER 308 L/SS 304L welds in a high-temperature water environment

机译:树突轴和融合边界对高温水环境中ER 308 L / SS 304L焊缝应力腐蚀开裂的影响

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摘要

This study investigated the effects of dendrite axis and fusion boundary (FB) on the stress corrosion cracking (SCC) of 308 L/304 L welds by using an alternating current potential drop (ACPD) technique to measure the SCC growth rates in a simulated boiling water reactor environment. The results show that the ferrite/austenite interfaces are more susceptible to SCC in the SS 308 L welds. Furthermore, the angle between the applied load and the dendrite axis affects the SCC growth rate, and as this angle approached 90 degrees, the SCC crack growth rate increases. The SCC cracks in the heat affected zone (HAZ) are mainly intergranular and some cracks propagate transgranularly. Furthermore, the primary crack in the HAZ propagates along the FB; when reaching FB, some secondary cracks are arrested at the FB. The residual strain caused by weld shrinkage is the crucial factor for the increase in SCC susceptibility in HAZ.
机译:本研究通过使用交流电位下降(ACPD)技术来研究树枝状轴和熔融边界(FB)对308L / 304L焊缝的应力腐蚀裂纹(SCC)的影响,以测量模拟沸腾中的SCC生长速率 水反应堆环境。 结果表明,铁氧体/奥氏体接口在SS 308 L焊缝中更容易受到SCC的影响。 此外,施加的负载和树突轴之间的角度影响SCC生长速率,并且随着该角度接近90度,SCC裂纹的生长速率增加。 热影响区(HAZ)中的SCC裂缝主要是晶间,一些裂缝繁殖跨平衡。 此外,HAZ中的初级裂缝沿FB传播; 在达到FB时,一些次要裂缝在FB被捕。 由焊接收缩引起的残余应变是HAZ中SCC易感性增加的关键因素。

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