期刊文献+

尼龙6选区激光烧结温度场的数值模拟 被引量:1

Numerical Simulation of Temperature Field in Selective Laser Sintering on PA6 Powders
在线阅读 下载PDF
导出
摘要 采用ANSYS软件对尼龙6粉末材料激光烧结过程温度场进行了三维数值模拟,计算模型中,考虑了材料热物性随温度变化的非线性特征,采用更接近实际的高斯热源模型,并利用APDL参数化设计语言实现热源的移动控制,用焓处理相变潜热的影响。模拟结果显示,烧结点的温度随着扫描线的增加,先逐渐升高后趋于稳定,烧结点最高温度滞后于光斑中心到达该位置时刻,烧结区域边界最高温度小于内部的最高温度。最后进行了试验验证,与试验结果较吻合。 The simulation of the three-dimensional temperature field in selective laser sintering (SLS) was carried out by using the software of ANSYS. The nonlinear factors of temperature-dependent material properties have been taken into account in the computational model, and the Gauss thermal resource which closer to the actual thermal resource was used, besides, the APDL (ANSYS Parametric Design Language) was used to carry out the moving control of thermal resource and the effect of latent heat was considered by using enthalpy. The simulation results show that the temperature of the sintering point rises gradually and stabilizes later with the increasing of the scan line, the highest temperature of sintering point lags behind the arrival moment of the center spot, the maximum temperature of sintering region boundary is lower than the internal. Finally, the sintering experiment was carried out, it indicates that the experimental result agrees with the previous simulation result well.
出处 《新技术新工艺》 2009年第7期109-112,共4页 New Technology & New Process
基金 航空基金资助(2006ZF56008) 江西教育厅基金(2007-176)
关键词 选区激光烧结 尼龙6 数值模拟 温度场 Selective laser sintering, PA6, Numerical simulation, Temperature field
  • 相关文献

参考文献6

二级参考文献42

  • 1潘琰峰,沈以赴,顾冬冬,胥橙庭.选择性激光烧结技术的发展现状[J].工具技术,2004,38(6):3-7. 被引量:69
  • 2林强,陆璇辉.高亮度超衍射极限光束的基本模式分析与应用前景[J].应用激光,1994,14(3):102-103. 被引量:5
  • 3王绍民,潘承志,蔡瑞荣,于世彭.二氧化碳激光新光束[J].应用激光,1994,14(4):160-160. 被引量:5
  • 4大中逸雄 许云祥(译).计算机传热凝固解析入门——铸造过程中的应用[M].北京:机械工业出版社,1988..
  • 5Jiang Wei, Xu Z X, Dalgarno K W, et al. Numerical prediction of thermal stresses in direct metal SLS process [A]. Proceeding of the Second International Conference on Rapid Prototyping & Manufacturing[C]. 2002.64 - 69.
  • 6Bugeda G,Cervera M,Lombera G. Numerical prediction of temperature and density distributions in selective laser sintering processes[ J]. Rapid Prototyping Journal, 1999,5 ( 1 ) : 21 - 26.
  • 7Greco A, Maffezzoh A. Polymer melting and polymer powder sintering by thermal analysis[ J]. Journal of Thermal Analysis and Calorimetry, 2003,72:1167 - 1174.
  • 8Vall N K, Balasubramanian B, Barlow J W, et al. A thermal model of polymer degradation during selective laser sintering of polymer coated ceramic powder[J]. Rapid Prototyping Journal, 1996,2(3) :24 - 40.
  • 9Fishcher P, Romano V,Weber H P, et al. Modeling of near infrared pulsed laser sintering of metallic powders[ A]. Proceedings of SHE [ C ]. Bellingham, 2003,5147 : 292 - 298.
  • 10Matsumoto M, Shiomi M, Osakada K, et al. Finite dement analysis of single layer forming on metallic powder bed in rapid prototyping by selective laser processing[ J]. International Journal of Machine Tools & Manufacture, 2002,42:61 - 67.

共引文献128

同被引文献9

  • 1邓朝晖,谢远铭,刘健宁.陶瓷粉末选择性激光烧结及聚合物纳米复合材料的研究现状及前景[J].现代制造工程,2006(6):139-142. 被引量:3
  • 2Kolossov S, Boillat E,Glardon R, et al. 3D FE simulation for temperature evolution in the selective laser sintering process E J ]. International Journal of Machine Tool & Manufacture, 2004,44(2) :117 - 123.
  • 3Dong L, Makradi A, Ahzi S, et al. Three-dimensional transi- ent finite element analysis of the selective laser sintering process [ J ]. Journal of Materials Processing Technology, 2009 (209) :700 - 706.
  • 4Yagi S, Kunni D. Studies on effective thermal conductivities in packed beds[J]. A I ch E J,1957(3) :83 -95.
  • 5Clansing A M. Heat transfer at the interface of dissimilar metals the influence of thermal strain [ J ]. Int. J. Heat Mass Transfer. Pergamon Press, 1966 (9) :791 - 801.
  • 6Delaunay D, LeBot P. Nature of contact between polymer and mold in injection molding. Part I:Influence of a non- perfect thermal contact [ J ]. POLYMER ENGINEERING AND SCIENCE,2000,40 (7) : 1682 - 1691.
  • 7Masse H, Arquis E, Delaunay D. Heat transfer with me- chanically driven thermal contact resistance at the polymer- mold interface in injection molding of polymers [ J ]. Int. J. Heat Mass Transfer,2004(47) :2015 -2027.
  • 8路远景,王翔,聂时振,崔瑞.尼龙粉末激光烧结的压实度影响实验研究[J].现代制造工程,2009(10):49-52. 被引量:3
  • 9王翔,崔瑞,杨浩.工程塑料粉末激光烧结三维温度场的理论和实验研究[J].中国激光,2011,38(1):81-87. 被引量:7

引证文献1

二级引证文献7

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