期刊文献+

MODELING METHOD FOR PRODUCT STRUCTURE MAPPING BASED ON REVERSE SOLVING OF LOCUS AND MOTION 被引量:3

MODELING METHOD FOR PRODUCT STRUCTURE MAPPING BASED ON REVERSE SOLVING OF LOCUS AND MOTION
下载PDF
导出
摘要 Aiming at the problem of structure design in reverse-design of mechanism, a structure mapping method based on reverse solving of locus and motion (RSLM) is presented. The mechanism scheme meeting the requirements of geometric and structural features is obtained through RSLM. The element instance subsets related to component are established based on the element type mapping, pair structure type mapping and design knowledge mapping between components and elements layer by layer. The assembly position mapping of elements is established based on the topological structure information of mechanism scheme, and the product modeling of structure mapping is realized. The algorithm program and prototype system of product structure mapping based on RSLM are developed. Application samples show that the method implements the integration of scheme design, assembly design and structure design, and modeling for product structure mapping based on RSLM. The feasibility of assembly is analyzed in scheme design that contributes to reducing the design error, and raising the design efficiency and quality. Aiming at the problem of structure design in reverse-design of mechanism, a structure mapping method based on reverse solving of locus and motion (RSLM) is presented. The mechanism scheme meeting the requirements of geometric and structural features is obtained through RSLM. The element instance subsets related to component are established based on the element type mapping, pair structure type mapping and design knowledge mapping between components and elements layer by layer. The assembly position mapping of elements is established based on the topological structure information of mechanism scheme, and the product modeling of structure mapping is realized. The algorithm program and prototype system of product structure mapping based on RSLM are developed. Application samples show that the method implements the integration of scheme design, assembly design and structure design, and modeling for product structure mapping based on RSLM. The feasibility of assembly is analyzed in scheme design that contributes to reducing the design error, and raising the design efficiency and quality.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第5期114-119,共6页 中国机械工程学报(英文版)
基金 This project is supported by National Hi-tech Research Development Program of China(863 Program,No.2006AA04ZlI4) Research Fund for the Doctoral Program of Higher Education,China(No.20040335060) Zhejiang Provincial Scientific Personnel Educational Foundation,China(No.R603240).
关键词 Reverse solving Mapping Mechanism Assembly Modeling Reverse solving Mapping Mechanism Assembly Modeling
  • 相关文献

参考文献11

  • 1HAN Y, LEE K. A case-based framework for reuse of previous design concepts in conceptual synthesis of mechanisms[J]. Computers in Industry, 2006, 57(4): 305-318.
  • 2HOELTZEL D A, CHIENG W H. Pattern matching synthesis as an automated approach to mechanism design[J]. ASME Journal of Mechanical Design, 1990, 112(4): 190-199.
  • 3GERO J S. Design prototypes: A knowledge representation schema for design[J]. AI Magazine, 1990, 11(4): 26-36.
  • 4KOTA S, CHIOU S J. Automated conceptual design of mechanisms[J]. International Journal of Mechanisms and Machine Theory, 1999, 34: 467-495.
  • 5KOTA S, WARD A C. Function, structure, and constraints in conceptual design[J]. Design Engineering Division, DE: ASME, 1990: 239-250.
  • 6QIAN L, GERO J S. Function-behavior-structure paths and their role in analogy-based design[J]. Artificial Intelligence for Engineering Design, Analysis and Manufacturing: AIEDAM, 1996, 10(4): 289-312.
  • 7CHIOU S J, SRIDHAR K. Automated conceptual design of mechanisms[J]. Mechanism and Machine Theory, 1999, 34(3): 467-495.
  • 8GORTI S R, SRIRAM R D. From symbol to form: a framework for conceptual design[J]. Computer-Aided Design, 1996, 28(11): 853-870.
  • 9MICHAL S, CHRISTIAN W, RAINER S. Functional features for design in mechanical engineering[J]. Computer in Industry, 1993, 23(1): 15-24.
  • 10GUI J K, MARTTI M. Functional understanding of assembly modeling[J]. Computer-Aided Design, 1994, 26(6): 435-450.

同被引文献34

引证文献3

二级引证文献8

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