数字化设计与制造

基于装配特征偶的设计意图建模方法

  • 徐志佳 ,
  • 王清辉 ,
  • 李静蓉
展开
  • 华南理工大学机械与汽车工程学院 广州 510640
王清辉,男,1972年出生,博士,教授,博士研究生导师。主要研究方向为CAD/CAM、多尺度功能结构的CAD建模与主动设计、VR交互技术、机器人离线编程等。E-mail:wqh@scut.edu.cn;李静蓉,女,1973年出生,博士,教授,博士研究生导师。主要研究方向为CAD/CAM、VR技术、人工智能等。E-mail:lijr@scut.edu.cn

收稿日期: 2017-01-09

  修回日期: 2017-05-11

  网络出版日期: 2018-01-05

基金资助

国家自然科学基金(51505152,51575192)、中国博士后科学基金(2015M580719)、浙江大学CAD&CG国家重点实验室开放课题(A1508)和广东省公益研究与能力建设专项(2015A030401028)资助项目。

Modeling Assembly Design Intent Based on Assembly Feature Pair

  • XU Zhijia ,
  • WANG Qinghui ,
  • LI Jingrong
Expand
  • School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640

Received date: 2017-01-09

  Revised date: 2017-05-11

  Online published: 2018-01-05

摘要

产品建模是影响制造企业竞争力的关键因素之一,包括零件建模和装配建模两个方面。在当前的计算机辅助设计系统(Computer-aided design,CAD)中,当设计一个零件时,设计者知道该零件将如何与他零件配合,但这一信息(装配设计意图)并未存储在零件模型中,因此需要在装配建模阶段通过大量地拾取几何元素、输入约束命令进行重复表达,工作量巨大、操作过程繁琐。为减轻上述问题,首先对装配设计意图的表现形式和传递过程进行系统分析,明确其建模的基本原理;其次,基于前期发展的装配特征偶(Assembly feature pair,AFP)概念,对装配设计意图涉及的配合结构和行为进行系统建模;最后,阐述在产品建模和装配过程仿真中依托AFP传递设计意图的模式,并通过实例验证基于AFP描述装配设计意图、实现两个阶段集成的可行性。该方法可为装配设计意图的一致性、简化传递奠定基础,丰富并发展现有CAD建模理论和技术体系。

本文引用格式

徐志佳 , 王清辉 , 李静蓉 . 基于装配特征偶的设计意图建模方法[J]. 机械工程学报, 2018 , 54(1) : 214 -222 . DOI: 10.3901/JME.2018.01.214

Abstract

Product modeling is one of the key factors influencing industrial completeness, including part modeling and assembly modeling in the mainstream computer-aided design (CAD) systems. However, when creating a part solid model at part modeling stage, the information of how it will interface with other parts assembly design intent (ADI), which is known by the designer, is not stored in the part model. As a result, the ADI has to be implemented again at assembly modeling stage, through numerous tedious and error-prone operations such as picking up geometry elements and inputting constraint commands. To alleviate these problems, firstly, the transmission process of the ADI in product modeling is systematically analyzed, revealing the principle of ADI modeling. Then, a previously developed concept of assembly feature pair (AFP) is used to model the abstract ADI (consisted of mating structure and mating behavior) merely known by the designer. Finally, the paradigm of transmitting ADI in product modeling and assembly process simulation based on AFP is demonstrated, and a gear bump sample is analyzed to validate the feasibility of modeling ADI and integrating the two stages through AFP, indicating that the proposed method may have the potential to make the ransmission of ADI in a consistent and simple way, and further to enrich and facilitate the development of CAD modeling theory and technology systems.

参考文献

[1] CHIN K S,ZHAO Y,MOK C K. STEP-based multiview integrated product modelling for concurrent engineering[J]. International Journal of Advanced Manufacturing Technology,2002,20:896-906.
[2] VAN HOLLAND W,BRONSVOORT W F. Assembly features in modeling and planning[J]. Robotics and Computer-Integrated Manufacturing,2000,16:277-294.
[3] SINGH P,BETTIG B. Port-compatibility and connectability based assembly design[J]. Journal of Computing and Information Science in Engineering,2004,4:197-205
[4] 邵晓东,殷磊,陆源,等. 一种基于特征的快速装配方法[J]. 计算机集成制造系统,2007,13(11):2217-2223. SHAO Xiaodong,YIN Lei,LU Yuan,et al. Rapid assembling approach based on assembly features[J]. Computer Integrated Manufacturing Systems,2007,13(11):2217-2223.
[5] 武殿梁,杨润党,马登哲,等. 集成虚拟装配环境中的多约束导航技术研究[J]. 机械工程学报,2004,14(11):47-52. WU Dianliang,YANG Rundang,MA Dengzhe,et al. Constraints navigation in integrated virtual assembly environment[J]. Chinese Journal of Mechanical Engineering,2004,14(11):47-52.
[6] YANG Rundang,FAN Xiumin,WU Dianliang,et al. Virtual assembly technologies based on constraint and DOF analysis[J]. Robotics and Computer-Integrated Manufacturing,2007,23(4):447-456.
[7] BOHEZ E,IRFAN M A. Assembly features:Definition,classification,and instantiation[C]//Proceedings of 2006 International Conference on Emerging Technologies,IEEE,2006:617-623
[8] MA Y S,BRITTON G A,TOR S B,et al. Associative assembly design features:Concept,implementation and application[J]. The International Journal of Advanced Manufacturing Technology,2007,32(5-6):434-444.
[9] LI Guidong,ZHOU Laishui,AN Luling,et al. A methodology for rapid assembly modeling of components with typical assembly feature[C]//Proceedings of 2009 International Conference on Measuring Technology and Mechatronics Automation,IEEE,2009,2:179-183.
[10] 刘振宇. 面向过程与历史的虚拟环境中产品装配建模理论、方法及应用研究[D]. 杭州:浙江大学,2001. LIU Zhenyu. Research on the theory,method and application of process-and-history-oriented assembly modeling in virtual environment[D]. Hangzhou:Zhejiang University,2001.
[11] ROY U,BHARADWAJ B. Design with part behaviors:Behavior model,representation and applications[J]. Computer-Aided Design,2002,34(9):613-636.
[12] SHANG Yong,HUANG Kezheng,ZHANG Qingping. Genetic model for conceptual design of mechanical products based on functional surface[J]. The International Journal of Advanced Manufacturing Technology,2009,42(3-4):211-221.
[13] ALBERS A,OHMER M,ECKERT C. Engineering design in a different way:Cognitive perspective on the contact and channel model approach[C]//Proceedings of 3rd International Conference on Visual and Spatial Reasoning in Design,Massachusetts Institute of Technology,Cambridge:University of Sydney,2004:1-21.
[14] 伊国栋,谭建荣,张树有,等. 基于配合面偶的装配约束建模[J]. 浙江大学学报,2006,40(6):921-926. YI Guodong,TAN Jianrong,ZHANG Shuyou,et al. Assembly constraint modeling based on mating surface couple[J]. Journal of Zhejiang University,2006,40(6):921-926.
[15] XU Zhijia,ZHANG Jie,LI Yuan,et al. Product modeling framework based on interaction feature pair[J]. Computer-Aided Design,2013,45:1591-1603.
[16] ZHANG Jie,XU Zhijia,LI Yuan,et al. Framework for the integration of assembly modeling and simulation based on assembly feature pair[J]. International Journal of Advanced Manufacturing Technology,2015,78(5):765-780.
[17] LE D T,CORTÉS J,SIMÉON T. A path planning approach to (dis)assembly sequencing[C]//Automation Science and Engineering,2009. CASE 2009. IEEE International Conference on. IEEE,2009:286-291.
[18] AGUINAGA I,BORRO D,MATEY L. Parallel RRT-based path planning for selective disassembly planning[J]. The International Journal of Advanced Manufacturing Technology,2008,36(11-12):1221-1233.
[19] CHEN Xiang,GAO Shuming,YANG Youdong,et al. Multi-level assembly model for top-down design of mechanical products[J]. Computer-Aided Design,2012,44(10):1033-1048.
[20] ZHANG Jie,WANG Pan,ZUO Mi,et al. Automatic assembly simulation of product in virtual environment based on interaction feature pair[J]. Journal of Intelligent Manufacturing,2015:1-22.
文章导航

/