The Transient Temperature Field Simulation and Analysis of Machinery’s Components by ABAQUS

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Abstract:

By using the Abaqus software, FEM calculation of the quenching process of non-standard component which has complex contour has been operated, the temperature field distribution which accompanies the quenching time has been obtained. The simulation process’s precision and efficiency is excellent, this method is applicable to the quenching technics’s improvement, and can offer the calculation basis to the analysis of the thermal stress field and residual stress. It can also provide the improving scheme for the intensity design of the coal winning machinery.

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Advanced Materials Research (Volumes 941-944)

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2420-2424

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Ma Xian. Numerical simulation of quenching process research progress [J], weapon of materials science and engineering, 1999 (3) : 59-63.

Google Scholar

[2] FuHongBo Qiao Yingjie, Li Chunkai etc. 18 cr2ni4wa strongly quenching microstructure and properties of steel [J], metal heat treatment, 2013 (1) : 88-91.

Google Scholar

[3] Feng Xiao, zhang lei, Li Zhaoguang etc. Hoist brake disc temperature field based on ANSYS simulation [J], coal mine machinery, 2012 (12) : 39-41.

Google Scholar

[4] YanWen LeiHong. Symmetric steel quenching process, temperature field distribution of the numerical model [J], journal of jimei university, 1998 (3) : 55 to 57.

Google Scholar

[5] Tan Zhen Guo Guangwen. Engineering alloy thermal physical properties [M]. Beijing: metallurgical industry press, (1994).

Google Scholar

[6] Cheng Heming Wang Honggang. Cylinder quenching process of 45 steel heat conduction equation solution of the inverse problem [J]. Journal of kunming university of science and technology, 1996 (6) : 101-104.

Google Scholar

[7] Cheng Heming, Wang Honggang, Chert Teilk. Acta Metallutgica Siniea[J],1997,33: 465.

Google Scholar

[8] Mukai R,Matsumoto T,Ju Dongying et al. Transactions of Nonferrous Metals Society of China [J],2006, 16(S2): 566.

Google Scholar

[9] FanDongLi. Strong quenching, a new improved method of heat treatment of steel [J]. Journal of heat treatment, 2005, 20 (4) : 172-174.

Google Scholar

[10] Li Pengliang. Strongly quenched base (2) [J]. Metal heat treatment abroad, 1997, 17 (4) : 19-21.

Google Scholar