Rapid Prototyping and Solid Free Form Fabrication

Author:

Conley J. G.1,Marcus H. L.2

Affiliation:

1. McCormick School of Engineering and Applied Science, Northwestern University, Evanston, IL 60208-3111

2. Institute of Materials Science, The University of Connecticut, U-136, 97 North Eagleville Road, Storrs, CT 06269-3136

Abstract

This article will give a brief review of the start-of-the-art in commercial practice and advanced research in the field of Rapid Prototyping with special attention to the additive methods of Solid Free Form Fabrication. Recent applications of this technology in computer integrated manufacturing environments will be outlined. Future applications and research in new materials will also be addressed.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference42 articles.

1. Agarwala, et al., 1995c, “Structural Ceramics by Fused Deposition of Ceramics,” Proceedings of Solid Free Form Fabrication Symposium 1995, Aug. 7–9, ed. by H. L. Marcus et al, University of Texas at Austin, pp. 1–8.

2. Agarwala M. , BourellD., BeamanJ., MarcusH., and BarlowJ., 1995a, “Direct Laser Sintering of Metals,” Rapid Prototyping Journal1, 1, pp. 26–36.

3. Agarwala M. , BourellD., BeamanJ., MarcusH. L., and BarlowJ., 1995b, “Postprocessing of SLS Metal Parts,” Rapid Prototyping Journal, 1, 2, pp. 36–44.

4. Atwood, C. et al., 1994, “Advances in Rapid Prototyping” in Proceedings of the Rapid Prototyping and Manufacturing ’94 Conference,” Apr. 24–26, Society of Manufacturing Engineers, Dearborn, Michigan.

5. Birmingham, B. R., Tompkins, J. V., Harrison, S. L., and Marcus, H. L., 1995, “SFF Laser Beam Processing Using Gas Phase Approaches,” Proceedings of the Second International Conference on Beam processing of Advanced Materials, 1995 ASM Meeting, Cleveland, OH, pp. 105–117.

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