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Analysis of cracks in the electron beam welded joint of K465 nickel-base superalloy

机译:K465镍基超合金电子束焊接接头裂缝分析

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摘要

The weldability of K465 nickel-based superalloy by electron beam weld (EBW) was studied, and the micro structural evolution and cracking characteristics were also investigated. The microstructure of fusion zone (FZ) were mainly gamma dendrite, Chinese-script MC carbides, the interdendritic gamma/gamma' eutectic and fine gamma' particles precipitated from dendritic and interdendritic region. The solidification cracking of FZ and intergranular liquation cracking in heat affected zone (HAZ) were observed in the joint. Solidification cracking was caused by the residual liquid metal originated from segregation of Ti, Nb and Al elements in interdendrite region at the last stage of solidification. And the HAZ liquation cracking was associated with the constitutional liquation of gamma', MC carbides, and melting of Cr-rich boride. With the increased heat input, the susceptibility of solidification cracking and liquation cracking presented different variation. And this variation of cracking susceptibility was discussed in this paper.
机译:研究了K465镍基超合金的可焊性通过电子束焊接(EBW),还研究了微结构演化和裂化特性。融合区(FZ)的微观结构主要是γ树突,中文脚本MC碳化物,从树突和巢状区域沉淀出沉淀的蛋白质古碳化物,蛋白质γ/γ/γ共晶和细γ颗粒。在接头中观察到热影响区(HAZ)中FZ和晶间液化裂解的凝固裂化。凝固裂化是由在凝固的最后阶段的中间晶体区中的残余液态金属引起的缺失液态金属引起。并且Haz液化裂解与γ',MC碳化物和富含Cr的硼化物熔化的结构有关。随着热输入的增加,凝固裂化和液化裂解的敏感性呈现了不同的变化。本文讨论了这种开裂敏感性的变化。

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