Dynamic Performance and Structural Optimization of Large-Scale Machine Table

Article Preview

Abstract:

Designed new table for large floor boring and milling machine, used ANSYS to optimize the structure of the table as a whole. According to the contours of removable material the materials which can be removed, obtained the inner ribs layout of table and the sand holes location of rib plate. Dynamic optimization variables on basic ribs cell, studied the effect of steel lattice structure parameters influenced on the natural frequency of the lattices and the related parameter of lattices influenced on whole table, to get the ideal rib lattice structure after optimizing again. Optimized bench can reduce quality, increase rigidity and dynamic performance.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

313-316

Citation:

Online since:

August 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] S. Zhang, The new trend of the development of CNC machine tools[J]. e-works, 2005, 2.

Google Scholar

[2] N.A. Xu, See the development of horizontal boring and milling machine and the boring milling machine from CIMT2005 [J]. Products and technology: 13.

Google Scholar

[3] J. L, X.D. Qian, Dynamic characteristics Analysis and optimization design of machine tool column structure [J]. Modern manufacturing engineering, 2007, (9): 129-132.

Google Scholar

[4] X. Chen, Method and application of dynamic mechanical structure design theory. Beijing: Machinery Industry Press, 1997: 12-14.

Google Scholar

[5] X.N. Ni, W.C. Tang, Finite element analysis and structural optimization of machine tool bed [J]. Design and research, 2005(2): 47-50.

Google Scholar

[6] D.L. Logan, The finite element method based tutorial [M]. Beijing: Electronic Industry Press, (2003).

Google Scholar

[7] J.J. Xu, ANSYS13. 0 Workbench Numerical simulation technology [M]. Chinese water conservancy and Hydropower Press, 2012. 3.

Google Scholar