期刊文献+

粉体性能及选区激光熔化打印工艺对AlSi10Mg合金致密化行为的影响 被引量:18

Effects of Powder Properties and Selective Laser Melting Processing on the Densification Behavior of AlSi10Mg Alloy
在线阅读 下载PDF
导出
摘要 本研究重点探索了AlSi10Mg合金的粉体性能以及选区激光熔化(SLM)打印工艺对AlSi10Mg合金粉体致密化行为的影响。通过对两种粒度组成不同的球形AlSi10Mg合金粉体在选区激光熔化(SLM)工艺过程中致密化行为的研究,发现AlSi10Mg粉体粒度组成对SLM打印过程中的致密化程度有关键性影响:粗粉含量较高,更有利于较高致密度的SLM打印件的制备。通过选取上述两种粉体中SLM打印性能较高的AlSi10Mg粉体,采用Box-Behnken响应曲面实验设计系统探索了SLM工艺参数对打印件致密度的影响规律,获得了SLM打印工艺参数与打印件相对密度的定量关系模型。研究发现,SLM打印参数中对AlSi10Mg合金相对密度的影响程度从大到小依次为:激光功率、扫描速度、扫描间距;当激光功率为375 W、扫描速度为2 000 mm/s、扫描间距为50μm时,AlSi10Mg打印件的相对密度值可达到98.26%,抗拉强度可达487 MPa。 This study is focused on the investigation of the effects of powder properties and selective laser melting(SLM)processing parameters on densification behavior of AlSi10Mg alloy.The densification behavior of the SLM processed samples made from two kinds of AlSi10Mg alloy powders with different particle size distributions was studied,the results show that particle size distribution of AlSi10Mg powder is critical to the densification behavior during SLM processing,and the higher content of coarser particles results in the higher density of SLM processed samples.By choosing the AlSi10Mg powders with better SLM processed density,the effect of SLM processing parameters on the density was investigated by using Box-Behnken response surface methodology.A quantitative relationship model between SLM processing parameters and the relative density of SLM processed samples was obtained.It is found that among the SLM processing parameters,laser power has the most significant influence on the relative density of SLM processed samples,followed by scanning speed,and hatch space.When the laser power is 375 W,scanning speed is 2 000 mm/s,and hatch space is 50μm,the relative density and tensile strength of AlSi10Mg printed samples can reach 98.26%and 487 MPa,respectively.
作者 段伟 赵哲 吉红伟 卢洋 陈嘉星 倪培燊 邓欣 刘建业 戚文军 牛留辉 高文华 DUAN Wei;ZHAO Zhe;JI Hongwei;LU Yang;CHEN Jiaxing;NI Peishen;DENG Xin;LIU Jianye;QI Wenjun;NIU Liuhui;GAO Wenhua(School of Electromechanical Engineering,Guangdong University of Technology,Guangzhou 510006;Guangdong Hanbang 3D Technology Co.,Ltd.,Zhongshan 528427)
出处 《材料导报》 EI CAS CSCD 北大核心 2019年第10期1685-1690,共6页 Materials Reports
基金 广东省前沿与关键技术创新重大科技专项(2017B090911006)~~
关键词 增材制造 选区激光熔化 AlSi10Mg合金粉体 BOX-BEHNKEN设计 相对密度 additive manufacture selective laser melting AlSi10Mg alloy powder Box-Behnken design relative density
  • 相关文献

参考文献4

二级参考文献27

  • 1顾冬冬,沈以赴.基于选区激光熔化的金属零件快速成形现状与技术展望[J].航空制造技术,2012,55(8):32-37. 被引量:59
  • 2王玉泰,于元勋.激光测粒仪的散射理论研究[J].齐鲁师范学院学报,1999,25(5):85-88. 被引量:2
  • 3胥光申,张锡强,朱金雄,赵万华,卢秉恒.光固化快速成形精度影响因子的优化[J].中国机械工程,2006,17(6):559-562. 被引量:7
  • 4马尔文仪器有限公司.激光粒度分析仪Mastersize 2000操作手册[Z].1999.
  • 5TIRYAKIOGLU M. Si particle size and aspect ratio distributions in an A1-7% Si-0.6% Mg alloy during solution treatment [J]. Material Science and Engineering :A, 2008, 473 (1/2) :1 -6.
  • 6LI X P, WANG X J, SAUNDERS M, et al. A selective laser melting and solution heat treatment refined Al-12Si alloy with a controllable uhrafine eutectic microstructure and 25% tensile ductility[J]. Acta Materialia, 2015, 95:74 - 82.
  • 7OLAKANMI E O, COCHRANE R F, DALGARNO K W. A review on selective laser sinteringimelting (SLS/SLM) of aluminium alloy powders : Processing, microstructure, and properties [J]. Progress in Materials Science, 2015, 74:401 - 477.
  • 8SERCOMBE T B, SCHAFFER G B. Rapid manufacturing of aluminum components [J]. Science, 2003, 301 (5637) : 1225 - 1227.
  • 9WANG X J, ZHANG L C, FANG M H, et al. The effect of atmosphere on the structure and properties of a selective laser melted Al-12Si alloy[J]. Material Science and Engineering A, 2014, 597:370 - 375.
  • 10SERCOMBE T, JONES N, DAY R, et al. Heat treatment of Ti-6Al-7Nb components produced by selective laser melting[J]. Rapid Prototyping Journal, 2008, 14 (5) : 300 - 304.

共引文献135

同被引文献152

引证文献18

二级引证文献50

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