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A microstructural and mechanical behavior study of heterogeneous P91 welded joint

机译:异质P91焊接接头的微结构和力学行为研究

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The current work has been performed to characterize the heterogeneous P91 welded joint. The gas tungsten arc welded (GTAW) P91 welds joint has been prepared using the dissimilar Inconel 617 filler. The P91 welded plates have been subjected to post-weld normalizing and tempering (PWNT) heat treatments for varying normalizing temperature in the range of 950-1150 degrees C. To homogenize the microstructure across the welded joint, tempering has been performed at 760 degrees C for 2 h for each normalized conditions. The tensile and micmhardness tests have been conducted to determine the mechanical properties of the welded joint in as-welded and heat-treated conditions. The microstructure characterization has been performed for the weld fusion zone (WFZ) and efforts have been made to develop a relation between microstructure evolutions and mechanical behavior of the welded joint. Microstructure analysis was carried out with optical and field scanning electron microscope (FESEM). The optimum combination of strength and ductility was obtained for the sample heat-treated at 1050 degrees C for 40 min (normalized)+760 degrees C/2 h (tempering). The lower strength was obtained for the Inconel 617 filler as compared to P91 filler, while ductility obtained for Inconel 617 filler was higher than that of P91 filler.
机译:已经进行了当前的工作以表征异构P91焊接接头。通过不同的Inconel 617填料制备气体钨弧焊(GTAW)P91焊接接头。 P91焊接板经过焊接后归一化和回火(PWNT)热处理,可在950-1150℃的范围内变化的归一化温度。为了使微观结构均匀化穿过焊接接头,回火已经在760℃下进行每个标准化条件2小时。已经进行了拉伸和仿状性试验以确定在焊接和热处理条件下焊接接头的机械性能。已经对焊接融合区(WFZ)进行了微观结构表征,并且已经进行了努力,以在焊接接头的微观结构演进和力学行为之间形成关系。使用光学和现场扫描电子显微镜(FESEM)进行微观结构分析。获得在1050℃下热处理40分钟(标准化)+ 760℃/ 2小时(回火)的样品的强度和延展性的最佳组合。与P91填料相比,对于Inconel 617填料获得的较低强度,而Inconel 617填料的延展性高于P91填料的延展性。

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