Research on Optimization of Column Structure Design for Dynamic Performance of Machine Tool

  • LIU Chengying ,
  • TAN Feng ,
  • WANG Liping ,
  • CAI Zhaoyong
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  • 1. Department of Mechanical Engineering, Tsinghua University, Beijing 100084;
    2. Beijing Key Lab of Precision/Ultra-precision Manufacturing Equipments and Control, Tsinghua University, Beijing 100084;
    3. School of Mechatronics Engineering, University of Electronic and Technology of China, Chendu 611731

Received date: 2015-02-01

  Revised date: 2015-10-17

  Online published: 2016-02-05

Abstract

Aiming at the optimization design of machine tool column structure which is weakest link, a method is presented based on topology optimization, ribs form selecting and layout, and size optimization. From kinetic analysis of the machine tool by finite element analysis (FEA), modal analysis and harmonic response analysis illustrate that the column structure is the key part to affect the dynamic performance of the machine tool. Taking the column as optimization object, its basic structure is designed by material distribution of topology optimization. Selecting the W ribs which have well bending stiffness and torsional stiffness to layout and optimize its sizes, the column structure is finally optimized. Analysis results demonstrate that the method effectively improve dynamic performance of the machine tool. On the premise of the column mass does not increase, 6 nature frequencies of the machine tool are increased with different degrees. The first nature frequency is increased by about 10%. The biggest resonance peaks of the machine tool in x direction are reduced by 49.8%, y direction 70.1%, z direction 66.2%.

Cite this article

LIU Chengying , TAN Feng , WANG Liping , CAI Zhaoyong . Research on Optimization of Column Structure Design for Dynamic Performance of Machine Tool[J]. Journal of Mechanical Engineering, 2016 , 52(3) : 161 -168 . DOI: 10.3901/JME.2016.03.161

References

[1] 辛志杰,徐燕申,满佳,等. 基于有限元分析的数控铣齿机立柱动静态设计[J]. 中北大学学报,2006,27(6): 484-486.  XIN Zhijie,XU Yanshen,MAN Jia,et al. FEM-based static&dynamic design of numerical control gear machining tool column[J]. Journal of North University of China,2006,27(6):484-486.
 [2] 杨勇,张为民,李鹏忠. 基于动态灵敏度分析的数控机床床身结构优化设计[J]. 机械设计,2011,28(9):49-52. YANG Yong,ZHANG Weimin,LI Pengzhong. Structure optimization design for NC machine bed based on dynamic sensitivity analysis[J]. Journal of Machine Design,2011,28(9):49-52.
 [3] 章婷. 基于有限元法的锻压机床身结构优化设计[J]. 锻压技术,2010,35(6):74-78. ZHANG Ting. Structural optimization design for forging machine bed based on finite element method[J]. Forging & Stamping Technology,2010,35(6):74-78.
 [4] 张学玲. 基于广义模块化设计的机械结构静、动态特性分析及优化设计[D]. 天津:天津大学,2001. ZHANG Xueling. Static and dynamic property analysis and optimization design for mechanical structure based on generalized modular design[D]. Tianjin:Tianjin University,2001.
 [5] 郭垒,张辉,叶佩青,等. 基于灵敏度分析的机床轻量化设计[J]. 清华大学学报,2011,51(6):846-850. GUO Lei,ZHANG Hui,YE Peiqing. Light weight design of a machine tool based on sensitivity analysis[J]. Journal Tsinghua University,2011,51(6):846-850.
 [6] 姜衡,管贻生,邱志成,等. 基于响应面法的立式加工中心动静态多目标优化[J].机械工程学报,2011,47(11):125-133. JIANG Heng,GUAN Yisheng,QIU Zhicheng,et al. Dynamic and static multi-objective optimization  of  a vertical machining center based on response surface method[J]. Journal of Mechanical Engineering,2011,47(11):125-133.
 [7]  饶柳生,侯亮,潘勇军. 基于拓扑优化的机床立柱筋板改进[J]. 机械设计与研究,2010,26(1):87-91.  RAO Liusheng,HOU Liang,PAN Yongjun. Improvement of the rib plate in machine tools column based on topology optimization[J]. Machine Design and Research,2010,26(1):87-91.
 [8]  孔杰. 钢轨焊缝磨床床身动态特性分析及优化[J]. 湖南文理学院学报,2014,26(1):46-49.  KONG Jie. The dynamic characteristics analysis and optimization of rail weld grinding machine lathe bed [J]. Journal of Hunan University of Arts and Science,2014,26(1):46-49.
 [9] HUANG D,LEE J J.  On obtaining machine tool stiffness by CAE techniques[J].  International Journal of Machine Tools and Manufacture,2001,41(8):1149-1163.
[10] 于长亮,张辉,王仁彻,等. 机床整机动刚度薄弱环节辨识与优化方法研究[J]. 机械工程学报,2013,49(21):11-17. YU Changliang,ZHANG Hui,WANG Renche,et al. Study on method for weak link identification of dynamic stiffness of a machine tool and optimization design[J]. Journal of Machine Engineering,2013,49(21):11-17.
 [11] 伍建国,陈新,毛海军,等. 内圆磨床床身设计参数的灵敏度分析及动态设计[J]. 南京航空航天大学学报,2002,34(6):545-546. WU Jianguo,CHEN Xin,MAO Haijun,et al. Sensitivity analysis and dynamic design of design parameters for internal grinder bed[J]. Journal of Nanjing University of Aeronautics &Astronautics,2002,34(6):545-546.
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