应用激光2024,Vol.44Issue(2) :10-18.DOI:10.14128/j.cnki.al.20244402.010

线、体能量密度对激光选区熔化AlSi10Mg合金致密度及缺陷的影响

Effect of Linear and Volumetric Energy Density on Relative Density and Defects of AlSi10Mg Alloy Prepared by Selective Laser Melting

刘伟军 丁治国 王慧儒 卞宏友 张凯
应用激光2024,Vol.44Issue(2) :10-18.DOI:10.14128/j.cnki.al.20244402.010

线、体能量密度对激光选区熔化AlSi10Mg合金致密度及缺陷的影响

Effect of Linear and Volumetric Energy Density on Relative Density and Defects of AlSi10Mg Alloy Prepared by Selective Laser Melting

刘伟军 1丁治国 1王慧儒 1卞宏友 1张凯1
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作者信息

  • 1. 沈阳工业大学机械工程学院,辽宁沈阳 110870
  • 折叠

摘要

基于激光选区熔化技术制备AlSi10Mg合金试样,探究线、体能量密度对致密度及孔隙缺陷的影响规律,并通过缺陷微观形貌及熔池特征分析,揭示了缺陷形成机理.结果表明,相同线或体能量密度不同样品的致密度存在明显的差异性,采用线、体能量密度协同分析,不同样品的致密度差值显著降低.当线能量密度为0.12~0.28 J·mm-1,且体能量密度为30~70 J·mm-3时,样品致密度可达99%以上.此外,当线、体能量密度均较低时,形成孔隙形状不规则的未熔合缺陷,位于相邻熔池间且可贯通多个扫描层;当线能量密度较高时,形成孔隙尺寸较大的圆形匙孔缺陷,位于熔池底部.

Abstract

In this paper,the AlSi10Mg alloy samples were prepared based on the selective laser melting(SLM)technique,and the effect of linear energy density and volumetric energy density on relative density and pore defects were investigated.The for-mation mechanism of defects were revealed by analyzing of defect microstructure and melt pool characteristics.The results show that the relative density of different samples is obviously different for the same linear/volumetric energy density,and the relative density difference among different samples is significantly reduced by using linear energy density cooperating with vol-ume energy density.The relative density of over 99%is obtained when linear energy density is from 0.12 to 0.28 J/mm and volume energy density is from 30 to 70 J/mm3.In addition,low linear and volumetric energy densities result in irregular lack-of-fusion defects that traverse multiple melt pool layers,while high linear energy density leads to the formation of circular key-hole defects with large pore sizes located at the base of the melt pool.

关键词

激光选区熔化/AlSi10Mg合金/能量密度/致密度/缺陷

Key words

selective laser melting/AlSi10Mg alloy/energy density/relative density/defect

引用本文复制引用

基金项目

国家科技重大专项(2019-Ⅶ-0004-0144)

辽宁省高等学校创新团队支持计划(20211402)

辽宁省百千万人才工程项目(LNBQW 2020B0050)

出版年

2024
应用激光
上海市激光技术研究所

应用激光

CSTPCDCSCD北大核心
影响因子:0.461
ISSN:1000-372X
参考文献量25
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