Analysis on Static Characteristics of Flipping Horizontal Machining Center

Article Preview

Abstract:

The worktable and the mainframe of the flipping horizontal machining center can be separated. The performance of the mainframe largely determines the machining performance of the whole machine. The deformation of mainframe under the application of certain forces demonstrates its static characteristics, which helps to find the vulnerable points for improvements. This paper mainly discusses the modeling of ball screw interfaces by taking into account the interface modeling. Static analysis is made by using Workbench to provide guidance for structural improvements.This electronic document is a “live” template and already defines the components of your paper [title, text, heads, etc.] in its style sheet.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

577-581

Citation:

Online since:

December 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Shi Jun, Li Gang, APM 2040 Flipping Horizontal Machining Center[J], Aeronautical Manufacturing Technology, 2014, 04: 100-101.

Google Scholar

[2] Wu Yanling, Liu Weihong, Bao Pengchao, Advanced CNC Equipment Made in China Boosting Development of Aviation Industry[J], Aeronautical Manufacturing Technology, 2014, 03: 48-51.

Google Scholar

[3] Liu Feng, Gao Changcai, Look Forward to Future Machine Tool, Services for Aviation Industry[J], Aeronautical Manufacturing Technology, 2014, 11: 56-59.

Google Scholar

[4] JIANG Heng, GUAN Yisheng, QIU Zhicheng, etc, Dynamic and Static Multi-objective Optimization of a Vertical Machining Center Based on Response Surface Method[J], JOURNAL OF MECHANICAL ENGINEERING, 2011, 11: 125-133.

DOI: 10.3901/jme.2011.11.125

Google Scholar

[5] WENG ZeYu, ZHANG NanNan, CAI Yong, etc, APPLICATION OF FINITE ELEMENT TECHNIQUE IN MACHINE DYNAMIC DESIGN BASED ON ENERGY BALANCE[J], Journal of Mechanical Strength, 2011, 03: 411-417.

Google Scholar

[6] ZHANG Xian-dong, XU Yan-shen, LIN Han-yuan, Static and dynamic design on structural components of NC machine tools based on FEM[J], JOURNAL OF MACHINE DESIGN, 2005, 05: 46-48.

Google Scholar

[7] Guo Zhiquan, Huo Jinhai, Xu Yanshen, Structural Dynamic Design of CNC Machine Tool[J], Manufacturing Technology & Machine Tool, 2007, 08: 71-75.

Google Scholar

[8] Zang Huiling, Jiang Shuyun, Zhu Shulong, etc, Dynamic Design of Structural for Big Roller Grinding Machine[J], Manufacturing Technology & Machine Tool, 2009, 04: 66-69.

Google Scholar

[9] MENG Yan, SUN Yang, JIA Li-min, Optimized Design of RITS Physical Structure Based on Multi-objective GA[J], JOURNAL OF THE CHINA RAILWAY SOCIETY, 2006, 03: 58-62.

Google Scholar

[10] LIU Yang, Li Jing-kui, ZHU Chun-xia, etc, Influence of Linear Rolling Guide Joint on Dynamic Behavior of NC Machine Tools[J], Journal of Northeastern University(Natural Science), 2006, 12: 1369-1372.

Google Scholar

[11] Wang Yi, The Analysis andOptimization of the Dynamic Characteristics in Vertical Machining Centers[D], Tsinghua University, (2011).

Google Scholar

[12] IPIRANGA. GROUNG BALLSCREWS A Edition[X], IPIRANGA of Spain.

Google Scholar