Wear Properties of Intermetallic Compound Reinforced Functionally Graded Materials Fabricated by Centrifugal Solid-particle and In-Situ Methods

Author:

WATANABE Yoshimi1,SATO Hisashi2,FUKUI Yasuyoshi3

Affiliation:

1. Department of Engineering Physics, Electronics and Mechanics Graduate School of Engineering, Nagoya Institute of Technology

2. Department of Techno-Business Administration Graduate School of Engineering, Nagoya Institute of Technology

3. Department of Mechanical Engineering, Kagoshima University

Publisher

Japan Society of Mechanical Engineers

Reference26 articles.

1. (1) Suresh, S. and Mortensen, A., Fundamentals of Functionally Graded Materials, Processing and Thermomechanical Behaviour of Graded Metals and Metal-ceramic Composites, IOM Communications Ltd, (1998).

2. (2) Miyamoto, Y., Kaysser, W. A., Rabin, B. H., Kawasaki, A. and Ford, R. G. ed., Functionally Graded Materials, Design, Processing and Applications, Kluwer Academic Publishers, (1999).

3. (3) Fukui, Y., Fundamental Investigation of Functionally Gradient Material Manufacturing System Using Centrifugal Force, JSME International Journal Series III, Vol. 34, No. 1 (1991), pp. 144-148.

4. (4) Watanabe, Y., Yamanaka, N. and Fukui, Y., Control of Composition Gradient in a MetalCeramic Functionally Graded Material Manufactured by the Centrifugal Method, Composites Part A, Vol. 29A, Nos. 5-6 (1998), pp. 595-601.

5. (5) Watanabe, Y. and Fukui, Y., Microstructures and Mechanical Properties of Functionally Graded Materials Fabricated by a Centrifugal Method (Review), Recent Research Developments in Metallurgical and Materials Sciences, Vol. 4, (2000), pp. 51-93.

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