Please wait a minute...
J4  2010, Vol. 44 Issue (12): 2354-2359    DOI: 10.3785/j.issn.1008-973X.2010.12.020
    
Concept system and application method of mechanical symmetry
MA Zhi-yong, QIU Qing-ying, FENG Pei-en, SHEN Men-hong, ZENG Ling-bin
State Key Laboratory of CAD&CG, Zhejiang University, Hangzhou 310027, China
Download:   PDF(0KB) HTML
Export: BibTeX | EndNote (RIS)      

Abstract  

On the basis of the research on a large number of instances concerning mechanical symmetry, the existing concept system of mechanical symmetry was improved and completed, and the concept and hierarchical system of mechanical symmetry classified by structure symmetry, principle symmetry and function symmetry was presented to support establishing a comprehensive mechanical symmetry concept system, systematically researching mechanical symmetry, refining design principles of mechanical symmetry, and directing applications of symmetry in mechanical design. The definitions of all kinds of symmetries were provided, and their existence and working principles in mechanical systems were illustrated by accurate instances. The application strategies of structure symmetry, principle symmetry and function symmetry on improvement and innovation of products were also illustrated. Analysis of instances showed that the concept system could completely contain all kinds of existence of symmetry in mechanical system, and it offered theoretic foundation for further research on mechanical symmetry design principles and the development of mechanical symmetry design methods.



Published: 01 December 2010
CLC:  TH 122  
Cite this article:

MA Zhi-yong, QIU Qing-ying, FENG Pei-en, SHEN Men-hong, ZENG Ling-bin. Concept system and application method of mechanical symmetry. J4, 2010, 44(12): 2354-2359.

URL:

http://www.zjujournals.com/eng/10.3785/j.issn.1008-973X.2010.12.020     OR     http://www.zjujournals.com/eng/Y2010/V44/I12/2354


机械对称性的概念体系及其应用方法

为了建立完善的机械对称性概念体系,系统地研究机械对称性、提炼机械对称性设计准则以及指导对称性在机械设计中的科学应用,在大量研究机械对称性实例的基础上,对已有机械对称性概念体系进行改进和完善,提出按结构对称性、原理对称性和功能对称性分类的机械对称性的概念和层次结构体系.给出各种对称性的定义,举例说明了它们在机械中的存在和作用原理.探讨结构对称性、原理对称性及功能对称性在改进和创新产品中的应用方法.举例分析表明:所提出的概念体系完整的体现了对称性在机械系统中的各种存在,为进一步研究机械对称性设计规律,建立机械对称性设计方法提供了理论基础.

[1] SUPPES P. Invariance, symmetry and meaning[J]. Foundations of Physics, 2000, 30(10): 1569-1585.
[2] KOPTSIK V A. Symmetry principle in physics[J]. Journal of Physics C: Solid State Physics, 1983, 16: 23-34.
[3] PETER K E. Evolution of floral symmetry[J]. Curr Opin Plant Biol, 2001, 4(1): 86-91.
[4] 冯培恩, 马志勇, 邱清盈, 等. 从自然科学到工程科学的对称性本体论研究[J]. 自然科学进展, 2008, 18(12): 1441-1450.
FENG Peien, MA Zhiyong, QIU Qingying, et al. Research on symmetry ontology: form natural science to engineering science[J]. Progress in Nature Science, 2008, 18(12): 1441-1450. (Chinese Edition)
[5] MA Zhiyong, FENG Peien, ZHANG Jian, et al. Research on mechanics symmetry ontology[C]∥World Congress on Engineering 2008.London, UK:[s.n.],2008.
[6] 杨文彬. 机械结构设计准则及实例[M]. 北京:机械工业出版社, 1997.
[7] 《起重机设计手册》编写组. 起重机设计手册[M]. 北京:机械工业出版社, 1980.
[8] 段广汉, 舒森茂, 王传贤, 等. 离合器结构图册[M]. 北京:国防工业出版社, 1985.
[9] 压力容器实用技术丛书编委会. 压力容器设计知识[M].北京:化学工业出版社, 2005.
[10] 申永胜. 机械原理教程[M]. 北京:清华大学出版社, 2005.
[11] 柯热夫尼柯夫, 等. 机构参考手册[M]. 北京:机械工业出版社, 1988.

[1] LIU Zheng, GU Xin-jian, PAN Kai, YANG Qing-hai. Research on TRIZ-based product eco-design
——Integrating rule-based reasoning and case-based reasoning
[J]. J4, 2014, 48(3): 436-444.
[2] YANG Wei, ZHANG Xiu-feng, YANG Can-jun, WU Hai-jie. Design of a lower extremity exoskeleton
based on 5-bar human machine model
[J]. J4, 2014, 48(3): 430-435.
[3] JI Xiang, GU Xin-jian, DAI Feng, LIU Zheng. BioTRIZ-based product innovative design process[J]. J4, 2014, 48(1): 35-41.
[4] LIN Xiao-hua, FENG Yi-xiong, TAN Jian-rong. Intervals prediction of system reliability parameters based on immune optimization[J]. J4, 2013, 47(6): 1013-1021.
[5] YING Zheng, WANG Qing, LI Jiang-xiong, KE Ying-lin,SUN Wen-bo,HAN Yong-wei. Motion data integration and monitoring of digital assembly system of aircraft[J]. J4, 2013, 47(5): 761-767.
[6] YING Zheng, ZHANG Ming, WANG Qing, KE Ying-lin. Modeling and simulation of wear for alignment mechanism of
large aircraft component
[J]. J4, 2013, 47(2): 209-215.
[7] LIU Xi-ze, QI Guo-ning, FU Jian-zhong, FAN Bei-bei, XU Jing. A design process model of integrated morphological matrix and
conflict resolving principles
[J]. J4, 2012, 46(12): 2243-2251.
[8] HUANG Xue-mei, ZHANG Lei-an, WEI Xiu-ting. D-MFAC algorithm control of megawatt wind turbine
blade static loading process
[J]. J4, 2012, 46(12): 2280-2284.
[9] . Constraint model and calculating method by evolutionary game algorithm for product conceptual design[J]. J4, 2012, 46(3): 533-541.
[10] LUO Cheng-dui, FENG Yi-xiong, TAN Jian-rong, AN Xiang-hua. Group multicriteria solving for product design scheme based on semantic PROMETHEE[J]. J4, 2012, 46(3): 524-532.
[11] AN Xiang-hua, FENG Yi-xiong, TAN Jian-rong. Collaborative evaluation method for product concept based on
Choquet integral and evidence theory
[J]. J4, 2012, 46(1): 163-169.
[12] ZHANG Xiu-Fen, ZHANG Shu-Wei, YI Guo-Dong. Multi-granularity and hierarchy disassemblability evaluation model
and methodology for products
[J]. J4, 2010, 44(3): 581-588.
[13] JIANG Wei-Guang, WU Jian-Wei, TUN Can, et al. Ontology based product knowledge integration[J]. J4, 2009, 43(10): 1801-1807.
[14] LIU Hai-Jiang, JI Yang-Jian, QI Guo-Ning, et al. Product integrated design knowledge model supporting multidisciplinary design optimization[J]. J4, 2009, 43(10): 1841-1847.
[15] FU Yu-Ying, BO Xiao-Hong, WANG Zheng-Xiao. Supply chain multiobjective optimization based on fuzzy cooperative game[J]. J4, 2009, 43(09): 1644-1648.