期刊文献+

基于选区激光熔化制备的点阵优化结构形貌和组织分析 被引量:9

Morphologyand Organization Analysis of Lattice Optimized Structure Based on Selective Laser Melting
原文传递
导出
摘要 选区激光熔化作为一种新型的绿色制造技术,在加工内部复杂界面的结构件时有着独特的优势。本文设计了一组带有优化半径的金刚石点阵结构并通过选区激光熔化技术成型,观察其表面形貌并对比分析了3种不同热处理工艺下试样微观组织的变化。研究结果表明试样成型质量较好,结构表面带有粘粉和波纹;同时发现热处理后,组织中Si相从过饱和的α相中析出,而Al相在远离Si的区域内均匀分布,这与未热处理之前的Al、Mg相均匀分布形成对比。 Selective laser melting as a new type of green manufacturing technology has unique advantages in processing structural parts with complex internal interfaces.In this paper,a set of diamond lattice structure with optimized radius was designed and formed by selective laser melting technology.Then the surface morphology was observed and the microstructure changes of the samples under three different heat treatment processes were compared and analyzed.The results show that the sample has good molding quality,and the surface of the structure has sticky powder and corrugated.At the same time,it is found that the Si phase in the structure is precipitated from the supersaturatedαphase,and the Al phase is evenly distributed in the region away from Si.Contrast with the uniform distribution of Al and Mg before heat treatment.
作者 聂云飞 刘斌 李忠华 蒯泽宙 杨帅 刘文鹏 康锋 孟少峰 逯津杰 Nie Yunfei;Liu Bin;Li Zhonghua;Kuai Zezhou;Yang Shuai;Liu Wenpeng;Kang Feng;Meng Shaofeng;Lu Jinjie(School of Materials Science and Engineering,North University of China,Taiyuan,Shanxi 030051,China;School of Mechanical Engineering,North University of China,Taiyuan,Shanxi 030051,China;Key Laboratory for AMT of Shanxi,North University of China,Taiyuan,Shanxi 030051,China;Jinxi Axle Co.,Ltd.,Taiyuan,Shanxi 030027,China)
出处 《应用激光》 CSCD 北大核心 2020年第2期205-213,共9页 Applied Laser
基金 山西省科技重大专项(项目编号:20181102012) 先进制造技术山西省重点实验室开放基金资助(项目编号:XJZZ201805)。
关键词 选择性激光熔化 微观组织 热处理 表面形貌 selective laser melting microstructure heat treatment surface topography
  • 相关文献

参考文献3

二级参考文献28

  • 1杨海欧,林鑫,陈静,杨健,黄卫东.利用激光快速成形技术制造高温合金不锈钢梯度材料[J].中国激光,2005,32(4):567-570. 被引量:21
  • 2何德坪,闻德荪,张勇,舒光冀.铝熔体在多孔介质中的渗流过程[J].材料研究学报,1997,11(2):113-119. 被引量:17
  • 3[1]Ashby M F,Evans A G,et al.Metal Foams [M].Boston: B-H Press,2000,6. 被引量:1
  • 4[2]WU Zhao-jin(吴照金),HE De-ping(何德坪).Changes in porosity of foamed Al during solidification [J].Chinese Science Bulletin,2000,45(18): 1667. 被引量:1
  • 5[3]YANG Dong-hui(杨东辉),HE De-ping(何德坪).Porosity of porous Al alloy [J].Science in China (B),2001,44(4): 411-419. 被引量:1
  • 6SONG Zhen-lun(宋振纶),HE De-ping(何德坪).铝熔体泡沫形成过程中粘度对孔结构的影响[J].Journal of Material Research(材料研究学报),1997,(11):257. 被引量:1
  • 7[8]McIntyre A,Anderton G E.Fracture properties of a rigid polyurethane foam over a range of densities [J].Polymer,1979,20: 247. 被引量:1
  • 8[9]Davies G J,Zheng Shu.Metallic foams: their production,properties and applications [J].Journal of Materials Science,1983,18: 1899. 被引量:1
  • 9[10]Ashby M F.The mechanical properties of cellular solids [J].Metallurgical Transaction A,1983,14A: 1755. 被引量:1
  • 10[11]Miltz J,Gruenbaum G.Evaluation of cushioning properties of plastic foams from compressive measurements [J].Polym Eng Sci,1981,21: 1010. 被引量:1

共引文献48

同被引文献56

引证文献9

二级引证文献20

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