期刊文献+

电弧轨迹对CMT电弧增材制造Inconel 625合金厚壁件组织与性能的影响 被引量:5

Effect of Arc Trajectory on Microstructure and Properties of Inconel 625 Alloy Thick-Wall Parts by CMT Arc Additive Manufacturing
下载PDF
导出
摘要 采用以冷金属过渡(CMT)电弧为热源的增材制造技术制备Inconel 625合金厚壁件,对比研究了摆动与两道多层电弧轨迹下厚壁件的显微组织和性能。结果表明:在摆动电弧轨迹增材制造过程中出现了飞溅现象,厚壁件表面粗糙,而在两道多层电弧轨迹增材制造过程中无明显飞溅现象,厚壁件表面光滑平整;厚壁件中树枝晶的生长方式均为外延生长,树枝晶中存在二次枝晶以及三次枝晶,且两道多层电弧轨迹下的枝晶间距小于摆动电弧轨迹下的;两道多层电弧轨迹下厚壁件的平均抗拉强度高于摆动电弧轨迹下的;摆动和两道多层电弧轨迹下厚壁件的抗拉强度各向异性百分比均很小,分别为4%,4.5%,厚壁件的断裂类型均为韧性断裂。 The thick-wall parts of Inconel 625 alloy were prepared by additive manufacturing technique using cold metal transition(CMT)arc as heat source.The microstructure and properties of the parts under oscillating and two-pass multi-layer arc trajectories were comparatively studied.The results show that spatter appeared during the additive manufacturing with oscillating arc trajectory,and the surface of the thick-wall parts was rough;no obvious spatter appeared during additive manufacturing with two-pass multi-layer arc trajectory,and the surface was smooth.The growth mode of dendritic crystals in the thick-wall parts was epitaxial growth,and there were secondary and tertiary dendrites in the dendritic crystals;the dendrite spacing under oscillating arc trajectory was smaller than that under two-pass multi-layer arc trajectory.The average tensile strength of the thick-wall parts under two-pass multi-layer arc trajectory was higher than that under oscillating arc trajectory.The anisotropy percentages of the tensile strength of thick-wall parts under oscillating and two-pass multi-layer arc trajectory were very small,which were 4%and 4.5%,respectively.The fracture type of thick-wall parts was ductile fracture.
作者 徐文虎 张培磊 蒋旗 刘志强 于治水 叶欣 吴頔 史海川 XU Wenhu;ZHANG Peilei;JIANG Qi;LIU Zhiqiang;YU Zhishui;YE Xin;WU Di;SHI Haichuan(School of Materials Engineering,Shanghai University of Engineering Science,Shanghai 201620,China;Shanghai Collaborative Innovation Center of Laser Advanced Manufacturing Technology,Shanghai University of Engineering Science,Shanghai 201620,China)
出处 《机械工程材料》 CAS CSCD 北大核心 2020年第10期17-21,47,共6页 Materials For Mechanical Engineering
基金 上海市“创新行动计划”基础研究领域项目(17JC1400600,17JC1400601,19511106400,19511106402) 大学生创新训练项目(201910856020)。
关键词 Inconel 625合金 冷金属过渡电弧增材制造 显微组织 拉伸性能 Inconel 625 alloy CMT arc additive manufacturing microstructure tensile property
  • 相关文献

参考文献9

二级参考文献82

共引文献64

同被引文献72

引证文献5

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部