首页> 外文期刊>Journal of Failure Analysis and Prevention >Investigation of Early Cracking of Dissimilar Metal Welds in a 1000-MW Ultra-supercritical Power Plant Close to the Sea
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Investigation of Early Cracking of Dissimilar Metal Welds in a 1000-MW Ultra-supercritical Power Plant Close to the Sea

机译:1000 MW超超临界电厂靠近海的不同金属焊缝早期开裂的研究

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摘要

The early cracking of dissimilar metal welds (DMWs) between T91 martensitic steel and austenitic steel in a 1000-MW ultra-supercritical power plant was investigated in this article. Optical microscopy and scanning electron microscopy were used to characterize the microstructures of DMWs. The result shows that the breakdown of DMWs was brittle rupture along the prior austenite crystal boundary. The crack extended from T91 heat-affected zone to T91 base metal. Compared with the spare DMWs, its tensile strength and bending properties met the standard for DMWs. Hardness of T91 HAZ from failed DMWs was much higher than that of spare DMWs. Some pitting was observed at the T91 HAZ. Associating the high hardness of DMWs and particular service environment, it is concluded that the failure of DMWs was caused by the stress-corrosion crack.
机译:本文研究了在1000MW超超临界发电厂中T91马氏体钢和奥氏体钢之间不同金属焊接(DMWS)的早期开裂。 光学显微镜和扫描电子显微镜用于表征DMWS的微观结构。 结果表明,DMWS的击穿沿前奥氏体晶体边界是脆性破裂。 从T91热影响区域延伸到T91基金金属的裂缝。 与备用DMWS相比,其拉伸强度和弯曲性能符合DMWS的标准。 来自失败的DMWS的T91 HAZ的硬度远高于备用DMWS。 在T91 HAZ中观察到一些点蚀。 与DMWS和特定服务环境的高硬度相关联,得出结论,DMWS的失败是由应力腐蚀裂缝引起的。

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