网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
冷镦机床身轻量化设计中的迭代优化方法
英文标题:Method of iterative optimization in the lightweight design of cold heading machine bed
作者:何彬 李响 
单位:湖北理工学院 三峡大学 
关键词:冷镦机 床身 轻量化 拓扑优化 迭代优化 
分类号:TG315;TH122
出版年,卷(期):页码:2016,41(3):68-72
摘要:

拓扑优化是冷镦机床身轻量化设计的重要方法,针对冷镦机床身拓扑优化过程中存在优化指标冲突和局部收敛早优化空间不足等问题,提出一种迭代优化方法,通过冷镦机床身体积和应变能交替作为目标函数和约束展开优化,并根据优化结果递进更新的策略,逐步使冷镦机床身重量和整体刚性逼近一个最优值。描述了冷镦机床身轻量化设计中迭代优化的基本思路,建立了以冷镦机床身应变能和体积为优化指标的迭代优化模型,并详细规划了整个迭代优化流程,确定了迭代优化的终止条件。最后,以某型号冷镦机床身为例,采用有限元软件Abaqus 6.12实现了床身轻量化设计中的迭代优化过程。研究结果表明,所提出的迭代优化方法对于加大冷镦机床身的减重力度、提高其整体刚性和改善相关性能具有一定作用。

Topology optimization is an important method in the lightweight design of cold heading machine bed. For the issues of different optimized indexes and insufficient optimization spaces due to premature convergence in topology optimization of cold heading machine bed, a method of iterative optimization was put forward by alternately changing the volume and strain energy of cold heading machine bed into objective function and constraint. Furthermore, the beds weight and overall rigidness were approximate to an optimal value by updating methods according to the optimization results. Therefore, the thought of iterative optimization was described, the iterative optimization model with the optimized indexes of the beds volume and strain energy were constructed, the flow of iterative optimization was planned in detail, and the termination condition of optimization was established. Finally, for a type of cold heading machine bed, the process of its iterative optimization was realized by Abaqus 6.12. The result shows that the above method has play an important role in reducing the beds weight, enhancing the overall rigidness and improving some mechanical properties.

基金项目:
国家自然科学基金资助项目(51305232);湖北省自然科学基金资助项目(2012FFC016)
作者简介:
何彬(1970-),男,博士,副教授
参考文献:


[1]翟华,王玉山,李贵闪,等. 锻压机床轻量化研究现状和发展趋势[J]. 机床与液压,2011,39(20):113-117.Zhai H, Wang Y S, Li G S, et al. Research status quo and development trends on light-weight design of metalforming tool[J]. Machine Tool & Hydraulics, 2011, 39( 20):113-117.
[2]徐高春. 面向环保的高速全自动冷墩机优化研究与系统实现[D]. 上海:上海大学,2011.Xu G C. Optimization Research and System Implementation for High Speed Automatic Cold Heading Machine to Environment Protection[D]. Shanghai: Shanghai University, 2011.
[3]Blasques J P, Stolpe M. Maximum stiffness and minimum weight optimization of laminated composite beams using continuous fiber angles[J]. Structural and Multidisciplinary Optimization, 2011, 43(4): 573-588.
[4]Buhl T, Pedersen C B W, Sigmund O. Stiffness design of geometrically nonlinear structures using topology optimization[J]. Structural and Multidisciplinary Optimization, 2000, 19 (2): 93-104.
[5]Yoon G H, Kim Y Y. Topology optimization of material-nonlinear continuum structures by the element connectivity parameterization[J]. International Journal for Numerical Methods in Engineering, 2007, 69(10): 2196-2218.
[6]陈叶林,丁晓红,郭春星,等. 机床床身结构优化设计方法[J]. 机械设计,2010,27(8):65-68.Chen Y L, Ding X H, Guo C X, et al. Study on optimizing design method of machine tool bed structure[J]. Journal of Machine Desin, 2010, 27(8): 65-68.
[7]章婷. 基于有限元法的锻压机床床身结构优化设计[J]. 锻压技术,2010,35(6):74-78.Zhang T. Structural optimization design for forging machine bed based on finite element method[J]. Foging & Stamping Technology, 2010, 35(6):74-78.
[8]张学玲,徐燕申,钟伟泓. 基于有限元分析的数控机床床身结构动态优化设计方法研究[J].机械强度,2005,27(3):353-357.Zhang X L, Xu Y S, Zhong W H. Research on structural optimization method in design of NC machine tool bed based on dynamic analysis by FEM[J]. Journal of Mechanical Strength, 2005,27(3): 353-357.
[9]He B. Multi-constraint topology optimization of forging machine bed for light weight design[J]. International Journal of Advancements in Computing Technology, 2013, 9 (5):94-103
[10]乔赫廷. 连续体结构拓扑优化模型讨论及其应用[D]. 大连:大连理工大学,2010.Qiao H T. Analysis and Application of Topology Optimization Model of Continuum Structure[D]. Dalian: Dalian University of Technology, 2010.
[11]董立立,朱煜,牛小铁,等. 超精密机械结构多目标拓扑优化设计[J]. 中国机械工程,2010,21(7):761-765.Dong L L, Zhu Y, Niu X T, et al. Multi-objective topological optimization design of ultra-precision mechanical structure[J]. Chinese Mechanical Engineering, 2010, 21(7): 761-765.
[12]何彬,李响. 冷镦机床身热力分析与结构优化[J]. 锻压技术,2014,39(9):92-96.He B, Li X. Thermo-mechanical analysis and structure optimization for cold heading machine bed[J]. Forging & Stamping Technology, 2014, 39(9): 92-96.

服务与反馈:
文章下载】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9