Experimental Study on Roundness of High-Speed Cylindrical Grinding for 20CrMnTi Alloy Steel

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Abstract:

In order to reduce the roundness error of cylindrical grinding of shaft parts for 20CrMnTi alloy steel, the related experiments of high-speed cylindrical grinding are carried out and the influence of grinding parameters on roundness is analyzed. Based on the analysis of experimental data the conclusions are as follows: The influence of grinding wheel speed on work-piece roundness is not apparent, but the influence of work-piece speed and grinding depth on roundness is very significant. Based on high-speed grinding experiments the prediction model of cylindrical grinding for 20CrMnTi alloy steel is established by using of regression analysis method of least square. Based on the analysis of the roundness prediction model of cylindrical grinding the conclusions are as follows: The roundness error of cylindrical grinding parts will become lager with the increase of work-piece speed, grinding depth and grinding wheel speed.

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Periodical:

Advanced Materials Research (Volumes 1004-1005)

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1050-1054

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August 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] FENG Canbo, XIE Guizhi, SHENG Xiaomin: Journal of China Mechanical Engineering Vol. 24 (2013), p.322 (Chinese Mechanical Engineering Society, China).

Google Scholar

[2] CHI Longzhu: Journal of Machine Tool & Hydraulics Vol. 41(2013), p.34(Chinese Mechanical Engineering Society, and Guangzhou Mechanical Engineering Research Institute Co., Ltd, China).

Google Scholar

[3] HUANG Jidong, WANG Longshan, LI Guofa: Journal of Optics and Precision Engineering Vol. 18(2010), p.29 (China Nonferrous Metals Industry Association, China).

Google Scholar

[4] CHEN Yong, YANG Jianguo: Journal of Donghua University Vol. 39(2013), p.417 (Donghua University, China).

Google Scholar

[5] ZHANG Defeng: Practical Numerical Analysis of MATLAB (Tsinghua University Press, China 2012).

Google Scholar

[6] MA Li: Mathematical Experiments and Construction (Tsinghua University Press, China 2010).

Google Scholar