Optimum Design of Fatigue Strength of a Cold Extrusion Compound Container

[+] Author and Article Information
Zhonghua Luo, Zhiliang Zhang

Department of Plasticity Forming Engineering, Shanghai Jiaotong University, Shanghai 2000030, P. R. China

J. Manuf. Sci. Eng 127(1), 227-230 (Mar 21, 2005) (4 pages) doi:10.1115/1.1831288 History: Received April 28, 2003; Revised April 06, 2004; Online March 21, 2005
Copyright © 2005 by ASME
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Laue, K., and Stenger, H., 1981, Extrusion, American Society for Metals, Metals Park, Ohio.
Changshun, Yang, 1984, Cold Extrusion Technology Practice, National Defense Industry Press, Beijing.
Zutang,  Wang, 1981, “Optimum Design of Multi-layer Composite Cylinder of Cold Extrusion Dies and High Press Pressure Containers,” Chinese Journal of Mechanical Engineering, 17(1), pp. 1–13.
Adel, S. Saada, 1974, Elasticity Theory and Applications, Pergamon, New York.
Kohmoto, Minoru, and Ishikawa, Hiroshi, and Nakagawa, Takao, 1972, Fatigue of Metal and Design, Corona, Kokyo.
Mirko, Klesnil, and Petr, Lukáš, 1980, Fatigue of Metallic Materials, Elsevier Scientific, Amsterdam.
Fuchs, H. O., and Stephens, R. I., 1980, Metal Fatigue in Engineering, Wiley-Interscience, New York.


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Loading schematic of a thick wall cylinder
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Fatigue limit curve under uniaxial stress
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The maximal load capacity versus the outer radius curve for monobloc (1) and two-piece (2) and three-piece (3) containers
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The minimal outer radius versus the load capacity curve for monobloc (1) and two-piece (2) and three-piece (3) containers




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