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Effects of post-welding heat treatment on microstructure and mechanical properties of welding joint of new Ni-Fe based superalloy with Haynes 282 filler metal

机译:焊接后热处理对新型Haynes 282填充Ni-Fe基高温合金焊接接头组织和力学性能的影响

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The gas tungsten arc welding process was employed to weld a new wrought Ni-Fe based superalloy with the Haynes 282 filler metal, which was designed for advanced ultra-supercritical boiler tubes operated beyond 700 ℃. In this study, the evolution of microstructure and mechanical properties of the welding joint prior to and following the post-welding heat treatment (such as annealing treatment at 1010 ℃ for 2 h and 788 ℃ for 8 h) were investigated. The microstructure stability and hardness were also studied following 500 h, 1000 h and 3000 h at the service temperature (750 ℃). An epitaxial growth of the grains near the fusion line was observed, whereas the partition coefficients and solidification temperature range during the thermodynamic state of equilibrium were calculated in the weld metal zone. The welding heat affected zone of the as-welded welding joint was the weakest zone. In contrast, following the post-welding heat treatment, the segregation was significantly eliminated in the weld metal zone. Also, the mechanical properties of the welding heat affected zone were restored to the property levels of the base metal, with the weld strength reduction factor of 4%. Therefore, the effects of post-welding heat treatment on the microstructure and properties of welding joint were also investigated. Following 3000 h thermal exposure at 750 ℃, the coarsening rates of the spherical γ' precipitates of both the as-welded and post-welding heat treatment samples were consistent with the Lifshitz-Slyozov-Wagner (LSW) model. In addition, the microstructure stability of the welding joint was excellent, without any topolo-gically closed packed phase precipitation. The Haynes 282 filler metal could be a potential candidate material for the welding of this new Ni-Fe based superalloy.
机译:气体钨极电弧焊工艺用于用Haynes 282填充金属焊接新的变形的Ni-Fe基超级合金,该合金设计用于工作于700℃以上的先进超超临界锅炉管。在这项研究中,研究了焊接后热处理(例如在1010℃下进行2 h退火处理和在788℃下进行8 h退火处理)前后焊接接头的组织和力学性能的变化。在750℃的工作温度下500h,1000h和3000h下分别研究了组织的稳定性和硬度。观察到熔合线附近晶粒的外延生长,而在焊接金属区域中计算了热力学平衡状态下的分配系数和凝固温度范围。焊接接头的焊接热影响区是最弱的区域。相反,在焊接后热处理之后,在焊接金属区域中的偏析得到明显消除。而且,焊接热影响区的机械性能恢复到母材的性能水平,焊接强度降低系数为4%。因此,还研究了焊后热处理对焊缝组织和性能的影响。在750℃下暴露3000 h后,焊后和焊后热处理样品的球形γ'沉淀的粗化速率均与Lifshitz-Slyozov-Wagner(LSW)模型一致。另外,焊接接头的微观结构稳定性极好,没有拓扑封闭的堆积相沉淀。 Haynes 282填充金属可能是这种新型Ni-Fe基超级合金焊接的潜在候选材料。

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