Influence of Extrusion Ratio on Forming of Thick-Walled Tube

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Abstract:

Employed DEFORM software to simulate vertical extrusion of large diameter thick-walled pipe, by using the Finite Element Method in the three-dimensional modeling software Pro/E of the CAD platform. Analyze the law of blank flow in extrusion process, distribution of stress and strain, and the influence of different extrusion ratio on deformation of thick-walled tube comparatively.

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Periodical:

Advanced Materials Research (Volumes 217-218)

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952-957

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March 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jiahui Qu, Luming Yao, Mingkai Yue, Tao Huang, The influence of extrusion ratio on structure of AZ31 magnesium alloy, Journal of Light Alloy Fabrication Technology, Vol. 3(2009).

Google Scholar

[2] Yanhui Li, Baocheng Li, Congjuan Yin, The influence of extrusion ratio and extrusion temperature on structure and performance of AZ31 magnesium alloy, Journal of Metal World, Vol. 3(2008).

Google Scholar

[3] Lijun Zhang, Baohong Zhang, Zhimin Zhang, Jing Wang, The influence of extrusion ratio on structure and performance of AZ80 magnesium alloy, Journal of Thermal Processing Technology, Vol. 8(2010).

DOI: 10.1109/rsete.2011.5965736

Google Scholar

[4] Xiaogang Li, Xunwen Tong, Nong Li, Xiuli Shang, Hongchao Feng, The influence of extrusion process on structure and performance of TA15 profile, Journal of Titanium Industry Progress, Vol. 3(2010).

Google Scholar

[5] Guangfa Huang, Gaoyong Lin, Jie Jiang, Fang Wang, Libin Yang, Dashu Peng, The numerical simulation of large extrusion ratio for aluminum extrusion process, Journal of Nonferrous Metals, Vol. 5(2006).

Google Scholar

[6] Xiaolin Wang, Yang Yu, Shujin Liang, Erde Wang, The influence of hot extrusion process on grain size and properties of AZ31 magnesium, Journal of Materials Science and Technology, Vol. 6(2005).

Google Scholar

[7] Suling Cai, A numerical simulation method of aluminum extrusion process, Journal of Modern Manufacturing Engineering, Vol. 4(2008).

Google Scholar