Layered-Manufacturing of Fiber-Reinforced Composites

Author:

Zak G.1,Sela M. N.1,Yevko V.1,Park C. B.1,Benhabib B.1

Affiliation:

1. Computer Integrated Manufacturing Laboratory, Department of Mechanical and Industrial Engineering, University of Toronto, 5 King’s College Road, Toronto, Ontario, Canada M5S 3G8

Abstract

In this paper, we present a rapid manufacturing process for the layered fabrication of polymer-based composite parts using short discontinuous fibers as reinforcements. This process uses a UV-laser-based system for the selective solidification of the composite liquid. The primary components of the prototype are: (1) fiber-resin mixing subsystem, (2) composite-liquid deposition subsystem, (3) liquid leveling subsystem, and (4) laser-light delivery subsystem. Axiomatic Design Theory was used to validate the design selected for the experimental embodiment of the process. Extensive microscopic examination of the layered composite parts verified that the prototype system can yield comparable layer quality, in terms of accuracy and uniformity, to that of pure-resin parts made by a photopolymer-based commercial system. Furthermore, mechanical testing of these composite specimens showed up to 60 percent improvement in modulus over the unreinforced layered specimens.

Publisher

ASME International

Subject

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

Reference17 articles.

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3. Barlage, W. B., Jara-Almonte, C. C., Bagchi, A., Ogale, A. A., and Dodey, R. L., “Fiber/resin Composite Manufacturing Using Solid Freeform Fabrication,” Proc., Third Int. Conf. on Rapid Prototyping, June 1992, Dayton, Ohio, pp. 15–24.

4. Charan, R., Renault, T., Ogale, A. A., and Bagchi, A., “Automated Fiber-reinforced Composite Prototypes,” Proc. Fifth Int. Conf. Rapid Prototyping, June 1994, Dayton, Ohio, pp. 91–97.

5. Reiff, D. E., Dorinski, D. W., and Hunt, S. D., “Method of Manufacturing a Three-dimensional Plastic Article,” Motorola Inc., U.S. Patent 5173220, December 1992.

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