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Microstructural Evolution and Mechanical Properties of Inconel 625 Alloy during Pulsed Plasma Arc Deposition Process

查看全文 作  者:Fujia [1,2]Xu;Yaohui [2]Lv;Yuxin [2]Liu;Fengyuan [1,2]Shu;Peng [1]He;Binshi [1,2]Xu 高影响力作者 机构地区:[1]State Key Laboratory of Advanced Welding and Joining,Harbin Institute of Technology;[2]National Key Laboratory for Remanufacturing,Academy of Armored Forces Engineering高影响力机构 出  处:《Journal of Materials Science & Technology》索引2013年第29卷第5期,共9页高影响力期刊 基  金:supported by the National Basic Research Program of China('973 Project',No.2011CB013403);the National Science and Technology Supporting Project (Nos.2011BAF11B07 and 2011BAC10B05) 摘  要:Pulsed plasma arc deposition(PPAD),which combines pulsed plasma cladding with rapid prototyping,is a promising technology for manufacturing near net shape components due to its superiority in cost and convenience of processing.In the present research,PPAD was successfully used to fabricate the Ni-based superalloy Inconel 625 components.The microstructures and mechanical properties of deposits were investigated by scanning electron microscopy(SEM),optical microscopy(OM),transmission electron microscopy(TEM) with energy dispersive spectrometer(EDS),microhardness and tensile testers.It was found that the as-deposited structure exhibited homogenous columnar dendrite structure,which grew epitaxially along the deposition direction.Moreover,some intermetallic phases such as Laves phase,minor MC(NbC, TiC) carbides and needle-likeδ-Ni_3Nb were observed in y-Ni matrix.Precipitation mechanism and distribution characteristics of these intermetallic phases in the as-deposited 625 alloy sample were analyzed.In order to evaluate the mechanical properties of the deposits,microhardness was measured at various location (including transverse plane and longitudinal plane).The results revealed hardness was in the range of 260—285 HV_(0.2).In particular,microhardness at the interface region between two adjacent deposited layers was slightly higher than that at other regions due to highly refined structure and the disperse distribution of Laves particles.Finally,the influence of precipitation phases and fabrication strategies on the tensile properties of the as-deposited samples was investigated.The failure modes of the tensile specimens were analyzed with fractography. 关 键 词:NI基高温合金 沉积过程 力学性能 INCONEL 等离子体电弧 组织演变 脉冲 LAVES相
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