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首页> 外文期刊>Journal of Manufacturing Processes >EBSD observations of microstructural features and mechanical assessment of INCOLOY 825 alloy/AISI 321 stainless steel dissimilar welds
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EBSD observations of microstructural features and mechanical assessment of INCOLOY 825 alloy/AISI 321 stainless steel dissimilar welds

机译:EBSD观察组织的微观结构特征和机械评估825合金/ AISI 321不锈钢不同焊缝

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摘要

In this research the microstructure evolution and mechanical behavior of dissimilar weld between AISI 321 stainless steel (SS) and INCOLOY 825 using ERNiCrMo-3 (Inconel 625) filler wire were investigated. Electron back scattered diffraction (EBSD) analysis was used to characterize the weld substructure. The microstructural examination exhibited an austenitic matrix in either of the two base materials in which formation of Ti-bearing precipitates, more often with cubic morphology, were unveiled. An incomplete transformation of ferrite to austenite led to a significant accumulation of delta-ferrite at the heat affected zone (HAZ) of AISI 321 SS. An entirely austenitic structure accompanied by evidences of secondary phases, rich in Mo and Nb, at the inter-dendritic spaces in the weld metal were observed. Some columnar grains showed the 001 direction parallel to the normal direction relationship. The grain orientation spread map indicated that misorientation variations within the weld metal grains were significantly higher than those of the base metals and HAZs. Texture intensities of HAZs were relatively low. The abnormal grain growth observed in INCOLOY 825 HAZ had a significant effect on orientations of the austenite grains. However, it did not weaken the tensile strength of the weldment. Tensile specimen failure from SS side indicated that this material was more feeble comparing to the INCOLOY one and the weld area. Presence of brittle phases at the inter-dendritic spaces led to a fall in the weld impact toughness in comparison with the parent materials.
机译:在这项研究中,研究了AISI 321不锈钢(SS)和灌注器825之间不同焊接的微观结构演化和机械行为,使用厄尼昔核核核苷酸(Inconel 625)填料填料。电子背散射衍射(EBSD)分析用于表征焊接子结构。微观结构检查在两种基础材料中的任一基础材料中表现出奥氏体基质,其中揭开形成Ti轴承沉淀物的沉淀物,更常用于立方体形态。铁氧体对奥氏体的不完全转化导致AISI 321SS的热影响区(HAZ)的Delta-铁素体的显着积累。观察到伴随焊接金属中的树突间空间的二次相,富含副相的证据的完全奥氏体结构。一些柱状晶粒显示与正常方向关系平行的<001>方向。晶面向展开图表明焊接金属晶粒内的错误化变化显着高于基础金属和危险。危险的危险强度相对较低。灌注825 HAZ中观察到的异常晶粒生长对奥氏体颗粒的取向有显着影响。然而,它没有削弱焊接的拉伸强度。 SS侧的拉伸试样失效表明,与灌注1和焊接区域相比,这种材料更加虚弱。与母材料相比,树突间空间在树突间空间处的脆性相的存在导致焊缝冲击韧性。

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