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个人信息Personal Information

教授

博士生导师

硕士生导师

任职 : 精密与特种加工教育部重点实验室 副主任; 中国光整加工专业委员会 主任委员; 中国生产工程学会 常务理事; 中国国际磨粒加工技术学会(ICAT)常务理事

性别:男

毕业院校:东北工学院

学位:博士

所在单位:机械工程学院

学科:机械制造及其自动化

办公地点:机械工程学院知方楼7185室

联系方式:0411-84706138 gaohang@dlut.edu.cn

电子邮箱:gaohang@dlut.edu.cn

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Study on Improvement of Surface Roughness and Induced Residual Stress for Additively Manufactured Metal Parts by Abrasive Flow Machining

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论文类型:会议论文

发表时间:2018-01-01

收录刊物:CPCI-S

卷号:71

页面范围:386-389

关键字:Surface integrity; Abrasive flow machining; Additive manufacturing

摘要:Fabrication freedom is provided for production of metal parts with complex geometries that cannot be fabricated by conventional subtractive manufacturing, as rapid advancements in additive manufacturing (AM). However, as the quality of as-built surfaces of AM metal parts is far inferior to service requirements, the drawbacks in fabricating metal parts by AM include the poor as-built surface roughness inherent to balling effect and powder adhesion, the tensile residual stress in surface layer inherent to AM building process. In this paper, the additively manufactured aluminum alloy workpiece is polished by abrasive flow machining(AFM), and the effect of the process parameters of AFM on the workpiece's surface integrity is taken into account, i.e. surface roughness and compressive residual stresses induced. Results of the experiments show that surface roughness is significantly improved after AFM process and surface defects due to powder accumulations is also removed. Furthermore, compressive residual stresses are induced in layer inferior to the machined surface after AFM polishing process. It is proved that AFM offers effective finishing and improvement in surface integrity of AM parts, providing a feasible way to finish AM parts with complex inner surfaces. (C) 2018 The Authors. Published by Elsevier Ltd.