首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Characterization of Microstructures and Creep Fracture Characteristics of Dissimilar Metal Welds between Inconel 740H Ni-Based Superalloy and Gr.92 Ferritic Steel
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Characterization of Microstructures and Creep Fracture Characteristics of Dissimilar Metal Welds between Inconel 740H Ni-Based Superalloy and Gr.92 Ferritic Steel

机译:第740H基超合金和GR.92铁素钢的不同金属焊接微结构和蠕变断裂特性的表征

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Microstructure evolution and the creep fracture characteristics of dissimilar welds between Ni-based superalloy Inconel 740H and High Cr terrific steel Gr.92 were investigated. The dissimilar welds were fabricated by shielded metal arc (SMA) welding process with Ni-based austenitic Inconel 182 superalloy. Postweld heat treatment at 760 degrees C for 4 hours was conducted to temper the fresh martensite formed in the heat-affected zone (HAZ) of Gr.92, and to form gamma' strengthener in Inconel 740H. The weld interface between the Gr.92 and weld metal was characterized by a discrete line with minimal inter-diffusion, whilst the weld interface on the Inconel 740H side showed an unmixed zone having epitaxial columnar growth from the base metal. It was observed that the fresh untempered martensite formed at the Gr.92-sided coarse-grained HAZ next to the weld interface during PWHT. This may be due to higher Ni contents diffused from the Ni-based weld metal. A sharp increase in hardness was detected at the coarse-grained HAZ of Gr.92 while the hardness minimum occurred at the fine-grained and intercritical HAZ (FG/IC HAZ). Fracture after creep at 650 degrees C/80 MPa and 700 degrees C/35 MPa occurred at the FG/IC HAZ of Gr.92, commonly known as a type IV fracture. This may be attributed to the strain localization at the FG/IC HAZ due to the smaller grain size as well as the lowest hardness. The elemental migration across the weld interface was not significant. It was also found that a needle-like Nb-rich delta-phase formed at the interdendritic region of the weld metal after creep at 700 degrees C/35 MPa.
机译:研究了Ni基超合金inconel 740h和高Cr优于钢铁Gr.92的微观结构演化和蠕变断裂特性。通过屏蔽金属弧(SMA)焊接工艺与基于Ni的奥氏体Inconel 182高温合金制造不同的焊接。在760℃下的邮水热处理4小时进行调味,在GR.92的热影响区域(HAZ)中形成的新鲜马氏体,并在第740h中形成伽马增强剂。 GR.92和焊接金属之间的焊接界面的特征在于具有最小扩散的离散线,而Inconel 740H侧的焊接界面显示出具有来自基础金属外延柱状生长的未混合区域。观察到在PWHT期间,在焊接界面旁边的GR.92侧粗粒粗糙的粗糙粗糙沉肠中形成的新鲜无限的马氏体。这可能是由于从基于Ni的焊接金属扩散的更高的Ni内容物。在GR.92的粗粒沉肠下检测到硬度急剧增加,而硬度最小在细粒度和跨临界HAZ(FG / IC HAZ)处发生。在GR.92的FG / IC HAZ处发生650℃/ 80MPa和700℃/ 35MPa的裂缝,通常称为IV型骨折。这可能归因于FG / IC HAZ处的应变定位由于较小的粒度以及最低的硬度。焊接接口的元素迁移并不显着。还发现,在蠕变在700℃/ 35MPa的蠕变之后,形成在焊缝金属的间晶区域的针状Nb的富δ相。

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