Extrusion through controlled strain rate dies

Author:

Srinivasan R.,Gunasekera J. S.,Gegel H. L.,Doraivelu S. M.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Engineering,General Materials Science

Reference7 articles.

1. Y.V.R.K. Prasad, H.L. Gegel, S.M. Doraivelu, J.C. Malas, J.T. Morgan, K.A. Lark, and D.R. Barker, “Modeling of Dynamic Materials Behavior in Hot Deformation: Forging of Ti 6242,”Met. Trans. 15A, p. 1883 (1984).

2. Y.V.R.K. Prasad, H.L. Gegel, J.C. Malas, J.T. Morgan, K.A. Lark, S.M. Doraivelu, and D.R. Barker, “Constitutive Behavior and Dynamic Modeling of Hot Deformation of a P.M 2024 Al Alloy with 20 Vol.% SiC Dispersion,” Technical Report AFWAL-TR-84-4076, Air Force Wright Aeronautical Laboratories, Wright-Patterson AFB, November 1984.

3. J.C. Malas, H.L. Gegel, J.S. Gunasekera, S.M. Doraivelu, and J.T. Morgan, “Computer-Aided Design of Extrusion Dies by Metal-Flow Simulation,” inComputers in Engineering 1983 American Society of Mechanical Engineers, New York, 1983.

4. H.L. Gegel, J.S. Gunasekera, J.C. Malas, J.T. Morgan, and L.E. Matson, “Consolidation and Forming of P/M Porous Billets,” inRapid Solidification Processing Principles and Technologies, III, R. Mehrabian, Ed., National Bureau of Standards, Washington, D.C., 1982.

5. J.C. Malas, J.T. Morgan, H.L. Gegel, J.S. Gunasekera, S.M. Doraivelu, and S.I. Oh, “An Investigation on the Mathematical Modeling Technique used for Analyzing Industrial Metal-working Processes,” in11th North American Manufacturing Research Conference Proceedings, North American Manufacturing Research Institute of SME, Dearborn, Michigan, 1983, pp. 203–210.

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