• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2017, Vol. 53 ›› Issue (13): 118-124.doi: 10.3901/JME.2017.13.118

• 数字化设计与制造 • 上一篇    下一篇

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基于多对称特征的零件装配效率预测模型

邱清盈, 戚玉轩, 冯培恩, 李立新   

  1. 浙江大学CAD&CG国家重点实验室 杭州 310027
  • 出版日期:2017-07-05 发布日期:2017-07-05
  • 作者简介:

    邱清盈,男,1970年出生,副教授。主要研究方向为结构设计与优化、创新设计。

    E-mail:medesign@zju.edu.cn

    戚玉轩(通信作者),男,1984年出生,博士。主要研究方向为设计方法学、结构对称设计、创新设计。

    E-mail:qiyvxuan@zju.edu.cn

  • 基金资助:
    * 国家自然科学基金资助项目(51175455); 20160727收到初稿,20161225收到修改稿;

Part Assembly Efficiency Prediction Model Based on Multi-symmetry Features

QIU Qingying, QI Yuxuan, FENG Peien, LI Lixin   

  1. State Key Lab of CAD&CG, Zhejiang University, Hangzhou 310027
  • Online:2017-07-05 Published:2017-07-05

摘要:

为研究零件对称结构对装配效率的影响,分析抓取和定向两种零件装配操作过程,逐一考虑零件上的多对称特征并分类为轮廓型对称特征和定向型对称特征。以三种不同装配要求下,六边形棱柱零件可能转动的最大角度为例,在总对称角概念基础上提出零件总修正角概念。结合现有试验数据,在满足“零件越对称,装配效率越高”和四个基本条件下,建立多对称特征下的零件“对称度-装配时间”预测模型。用五种模型预测四种不同多对称零件的装配效率,对比结果表明:零件“对称度-装配时间”预测模型与试验结果更接近,具有更好的区分度与可信性。

关键词: 多对称特征, 零件对称性, 零件装配时间, 装配效率

Abstract:

To study the influence of parts’ structure symmetry on assembly efficiency, grasping and orienting operations during parts’ assembling process are analyzed, and symmetry features within a part are separately considered and classified into contour and extra-orientation symmetry features. Taking the maximum possible rotating angle of a hexagonal prism part under three different assembling conditions as an example, the concept of total angle of correction (TAC) is proposed based on the existing concept of total angle of rotation (TAR). Using the existing experimental data, a part “symmetry-handling time” prediction model is proposed, which satisfies both the premise of “part’s assembly efficiency increases with its structure symmetry” and the four basic conditions. Four different parts assembly efficiencies are estimated using five different models, and comparing results show that the “symmetry-handling time” prediction model proposed fits the experimental data better and has better discriminability and credibility.

Key words: multi-symmetry features, part assembly time, part symmetry, assembly efficiency