Generation of Defects Due to Machining of TiAl Intermetallic Compound and Their Effects on Mechanical Strength

Author:

Furusawa Toshiaki1,Hino Hiroshi1,Tsuji Sinji1,Koroyasu Sadatoshi1,Ichikawa Atsushi2

Affiliation:

1. School of Science and Engineering, Teikyo University, Toyosatodai, 1-1, Utsunomiya city, Tochigi, Japan

2. Tochigi Factory, Honda Motor Co., Ltd., Matsuyama-cho, 19, Mohka city, Tochigi, Japan

Abstract

The generation of machining defects and their effect on bending strength characteristics are discussed with respect to a TiAl intermetallic compound, which is attracting much attention as a high-temperature structural material because of its high specific strength. The discussion focuses on the mechanism of the formation of edge chipping and machined surface cracks during cutting of a TiAl intermetallic compound. Also, some effects of these machining defects on the bending strength are clarified. The comparison of cutting results with abrasive machining results helps clarify the dependence of strength on undeformed chip thickness during chip generation of machining processes.

Publisher

ASME International

Subject

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

Reference25 articles.

1. Stoloff, N. S., Liu, C. T., and Deevi, S. C., 2000, “Emerging Applications of Intermetallics,” Intermetallics, 8, pp. 1313–1320.

2. Huang, S. C., and Chesnutt, J. C., 1995, Intermetallic Compounds. Principles and Practice, Vol. 2 Practice: Gamma TiAl and its Alloys, Westbrook, J. H., et al., eds., John Wiley and Sons, Chichester, UK, pp. 73–90.

3. Banerjee, D., 1995, Intermetallic Compounds. Principles and Practice. Vol. 2 Practice: Ti3Aland its Alloys, Westbrook, J. H. et al., eds., John Wiley and Sons, Chichester, UK, pp. 91–131.

4. Clemens, H., Eberhardt, N., Glatz, W., Martinz, H. P., Knabl, W., and Reheis, N., 1997, “Processing and Properties of Gamma Titanium Aluminides,” Proc. 2nd International Symposium on Structural Intermetallics, Nathal, M. V., et al., eds, Champion, Pennsylvania, TSM, pp. 277–286.

5. Bartolotta, P. A., and Krause, D. L., 1999, “Titanium Aluminide Application in the High Speed Civil Transport,” Proc. 2nd International Symposium on Gamma Titanium Aluminides, Kim, Y. W., et al., eds, San Diego, California, TSM, pp. 3–10.

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