期刊文献+

基于3D打印的壳状模型轻量化实验平台构建

Construction of a 3D printing based on lightweight experimental platform for engineering models
下载PDF
导出
摘要 在研究计算机辅助设计与现代制造技术的基础上,设计实现了一个基于3D打印技术的工程模型轻量化实验平台,并基于该平台对轻量化设计的相关流程和方法论进行了深入研究。提出使用热扩散模拟受力分布对壳状模型进行轻量化设计,并以3D打印为实验手段,通过构建误差与参数关系对轻量化设计进行验证和反馈修正。实验平台为高效、可信的轻量化问题提供了分析、建模及验证的一整套方法与手段。 Based on the research of computer aided design and modern manufacturing, we design and implement a lightweight experimental platform based on 3D printing, and study the processes and methodologies of lightweight on this platform. We use heat diffusion based stress distribution to design the lightweight model, employ 3D printing to produce the entity models for laboratory testing, and a-chieve the optimal control of lightweight design using parameters feedback. This platform provides an efficient and creditable framework of lightweight consists of analysis,modeling and testing.
作者 王胜法 冯斌 樊鑫 刘斌 王祎 WANG Sheng-fa;FENG Bin;FAN Xin;L;WANG Yi(DUT-RU International School of Information and Software Engineering;School of Software, Dalian University of Technology, Liaoning 116620, China)
出处 《实验室科学》 2018年第2期4-7,共4页 Laboratory Science
基金 国家自然科学基金(项目编号:61300083 61402072)
关键词 3D打印 壳状模型 轻量化 实验平台 3D printing shell models lightweight experimental platform
  • 相关文献

参考文献3

二级参考文献142

  • 1Gibson I, Rosen D W, Stucker B. Additive manufacturing technologies[M]. New York: Springer, 2010.
  • 2Gershenfeld N. Fab: the coming revolution on your desktop?from personal computers to personal fabrication[M]. New York: Basic Books, 2008.
  • 3SadarJ S, Chyon G. 3D scanning and printing as a new me?dium for creativity in product design[C]//Proceedings of the 2nd Conference on Creativity and Innovation in Design. New York: ACM Press, 2011: 15-20.
  • 4Bickel B, Alexa M. Computational aspects offabrication: mod?eling, design, and 3D printing[J]. IEEE Computer Graphics and Applications, 2013, 33(6): 24-25.
  • 5Schmidt R, Ratto M. Design-to-fabricate: maker hardware re?quires maker software[J]. IEEE Computer Graphics and Appli?cations, 2013, 33(6): 26-34.
  • 6Bickel B. Computer graphics and digital fabrication: computa?tional challenges in designing virtual models for fabrica?tion[C]//Proceedings of Mathematical Progress in Expressive Image Synthesis. Berlin: Springer, 2014: 65-67.
  • 7Liu L, Wang C, Shamir A, et al. 3D printing oriented design: geometry and optimization[C]//Proceedings of SIGGRAPH Asia 2014 Courses. New York: ACM Press, 2014: Article No. 1.
  • 8Guo N, Leu MC. Additive manufacturing: technology, applica?tions and research needs[J]. Frontiers of Mechanical Engineer?ing, 2013, 8(3): 215-243.
  • 9Huang Y, Leu M C, MazumderJ, et al. Additive manufacturing: current state, future potential, gaps and needs, and recommen?dations[J].Journal of Manufacturing Science and Engineering, 2015,137(1):014001.
  • 10Telea A,Jalba A. Voxel-based assessment of printability of 3D shapes[C]//Proceedings of Mathematical Morphology and its Applications to Image and Signal Processing. Berlin: Springer, 2011: 393-404.

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