期刊文献+

基于变密度法的调整座拓扑优化设计

下载PDF
导出
摘要 拓扑优化是一种新型的结构设计方法,SolidThinking Inspire是Altair公司利用工程上拓扑优化技术,根据结构件的受力、支撑等工况条件,获得材料最省的最佳承力结构。本文利用SolidThinking Inspire对管道机器人调整座进行轻量化设计,在优化过程中考虑到了真实边界条件和载荷条件,优化后结果既满足零件功能性条件,又满足零件的轻量化设计需求。本文运用基于变密度法的拓扑优化设计软件对管道机器人调整座接结构进行拓扑优化设计,以达到对调整座结构轻量化设计的目的。 Topology optimization is a new type of structural design method. SolidThinking Inspire is Altair’s use of engineering topology optimization technology to obtain the most optimal load-bearing structure of materials according to the conditions of force an d support of structural members. In this paper, the SolidThinking Inspire is used to lightly design the pipe robot adjustment seat. The real boundary conditions and load conditions are taken into account in the optimization process. The optimized results not only meet the functional conditions of the parts, but also meet the lightweight design requirements of the parts. In this paper,the topological optimization design software based on the variable density method is used to optimize the topology design of the pipe joint adjustment structure to achieve the purpose of lightweight design of the adjustment seat structure.
出处 《科学技术创新》 2019年第36期37-39,共3页 Scientific and Technological Innovation
关键词 拓扑优化 管道机器人 结构优化 Topology optimization Pipeline robot Structure optimization
  • 相关文献

参考文献4

二级参考文献27

  • 1罗震,陈立平,黄玉盈,张云清.连续体结构的拓扑优化设计[J].力学进展,2004,34(4):463-476. 被引量:154
  • 2孙宝元,杨贵玉,李震.拓扑优化方法及其在微型柔性结构设计中的应用[J].纳米技术与精密工程,2003,1(1):24-30. 被引量:11
  • 3潘孝勇,柴国钟,刘飞,徐驰.悬置支架的优化设计与疲劳寿命分析[J].汽车工程,2007,29(4):341-345. 被引量:34
  • 4Rong JH, Xie YM, Yang XY, et al. Topology optimization of structures under dynamic response constriants. Journal of Sound and Vibration, 2000, 234(2): 177-189.
  • 5Rong JH, Xie YM. Yang XY. An improved method for evolutionary structural optimization against buckling. J Computers & Structures, 2001, 79:253,-263.
  • 6Xie YM. Steven GP. Evolutionary Structural Optimization.London: Springer-Verlag Limited, 1997.
  • 7Kim H, Querin QM, Sgeven GP, eg al. Development of an intelligent cavity creation (ICC) algorithm for evolutionary structural optimization. In: Proceedings of the Australian Conference on Structural Optimization, Sydney,1998. 241-249.
  • 8Querin OM, Young V, Steven GP, et al. Computational efficiency and validation of bi-directional evolutionary structural optimization. Computer Methods in Applied Mechanics and Engineering, 2000, 189:559-573.
  • 9Li Q, Steven GP, Xie YM. On equivalence between stress criterion and stiffness criterion in evolutionary structural optimization, Structural Optimization, 1999, 18(1): 67-73.
  • 10Sigmund O. Design of Multiphysics Actuators Using Topology Optimization - Part 1: One- material Structures. Computer Methods in Applied Mechanics and Engineering, 2001,190: 6577~6604

共引文献112

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