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首页> 外文期刊>Transactions of the Indian Institute of Metals >Influence of Filler Wires to Suppress the Microsegregation and to Improve Mechanical Properties of Conventional Arc-Welded Nickel-Based Superalloy Incoloy 20
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Influence of Filler Wires to Suppress the Microsegregation and to Improve Mechanical Properties of Conventional Arc-Welded Nickel-Based Superalloy Incoloy 20

机译:填充线抑制微量测定的影响及改善常规弧焊基超合金的力学性能20

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摘要

Elemental segregation leads to hot fissuring in the Incoloy 20. The present investigation examines the possibility of lessening the elemental segregation in the conventional arc welding techniques. In the present investigation, Incoloy 20 plates were fused by continuous current gas tungsten arc welding (CCGTAW) and pulsed current gas tungsten arc welding (PCGTAW) with two different nickel-based filler wires (ERNiCrMo-2 and ERNiCrMo-3). The result of the macroexamination shows that steady fluid flow with crack-free welding was succeeded in all the weldments. Optical and scanning electron microscope proves the columnar and cellular structure in CCGTAW specimens and fine equiaxed dendritic structure in PCGTAW specimens. Energy-dispersive spectroscopy (EDS) and X-ray diffraction results exhibit that the weld joint produced by CCGTAW ERNiCrMo-2 shows Cr segregation that leads to the formation of M23C6 phases in the interdendritic regions, whereas ERNiCrMo-3 shows the presence of NbC instead of M23C6. The elemental segregation is suppressed when it comes to PCGTA weldments in both filler wires. Electron backscatter diffraction analysis shows that the CCGTA weldments show coarser grain structure in the heat-affected zone (HAZ). In all the cases, the formation of secondary phases affects the strength of the weld joints at HAZ. Refined microstructure obtained in the PCGTAW in both filler wires shows the marginally higher ultimate tensile strength and toughness compared to the corresponding CCGTA weldments. From the corrosion study, PCGTAW specimens exhibit higher corrosion resistance than the CCGTAW specimens for both filler wires.
机译:元素偏析导致灌注组合20中的热裂纹。本研究审查了在常规电弧焊接技术中降低元素偏析的可能性。在本研究中,灌注20平板通过连续电流碳钨弧焊(CCGTAW)和脉冲电流汽油弧焊(PCGTAW)用两种不同的基于镍基填充线(ERNICRMO-2和ERNICRMO-3)融合。宏观抑制的结果表明,在所有焊件中成功地成功地成功地具有无裂缝焊接的稳定流体流动。光学和扫描电子显微镜在PCGTAW样本中证明了CCGTAW样本和细平衡的树突结构中的柱状和细胞结构。能量 - 色散光谱(EDS)和X射线衍射结果表明,CCGTAW erniCrmo-2产生的焊接接头显示CR偏析,其导致在中间胶质区域中形成M23C6相,而厄米核核桃-3显示NBC的存在M23C6。当涉及到两个填充线中的PCGTA焊接时,抑制了元素偏析。电子反向散射衍射分析表明,CCGTA焊接在热影响区(HAZ)中显示出较粗的晶粒结构。在所有情况下,二次相的形成会影响HAZ处的焊接接头的强度。与相应的CCGTA焊料相比,在两个填充线中的PCGTAW中获得的精磨微观结构显示了与相应的CCGTA焊料相比的略微较高的抗拉强度和韧性。从腐蚀性研究,PCGTAW试样表现出比两个填充线的CCGTAW样本更高的耐腐蚀性。

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