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X-ray Fractographic Study on Alumina and Zirconia Ceramics

Published online by Cambridge University Press:  06 March 2019

Sumio Tanaka
Affiliation:
Department of Materials Science, Kanazawa University 1-1, Marunouchi Kanazawa, Japan
Yukio Hirose
Affiliation:
Department of Materials Science, Kanazawa University 1-1, Marunouchi Kanazawa, Japan
Keisuke Tanaka
Affiliation:
Department of Engineering Science, Kyoto University Yoshida-honmachi, Sakyo-ku, Kyoto, Japan
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Extract

The residual stress left on the fracture surface is one of the important parameters in X-ray fractographic study. It has been used to analyze fracture mechanisms in fracture toughness and fatigue tests especially of high strength steels.

In this paper, X-ray fractography was applied to brittle fracture of alumina (Al2O3) and zirconia (ZΓO2) ceramics.

Type
XII. Analysis of Stress and Fracture by Diffraction Methods
Copyright
Copyright © International Centre for Diffraction Data 1990

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References

1. Hirose, Y., Yajima, Z. and Tanaka, K., “X-Ray Fractographic Approach to Fracture Toughness of AISI 4340 Steel”, Advances in X-Ray Analysis, vol.27, 213 (1984).Google Scholar
2. Hirose, Y. and Tanaka, K., “X-Ray Measurement of Residual Stress near Fatigue Fracture Surface of High Strength Steel”, Advances in X-Ray Analysis, vol.29, 265 (1986).Google Scholar
3. ASTM Standard, “Standard Test for PLANE-STRAIN FRACTURE TOUGHNESS OF METALLIC MATERIALS”, Part 10, 399-81(1981).Google Scholar
4. Rice, J. R., “Fracture”, H. Liebowitz, ed., I, Academic Press, New York 191(1968).Google Scholar
5. Tanaka, K. and Hirose, Y., “Fracture Criterion for Crack Initiation from Blunt Notch”, Proc. 18th X-Ray Symposium, The Society of Material Science, Japan, 140(1981).Google Scholar
6. Levy, S. N., Marcal, P. V., Ostengren, W. J. and Rice, J. R., “Small Scale Yielding Near a Crack in Plane Strain: A Finite Element Analysis”, Int. J. Frac. Neeh., 7, 143 (1971).Google Scholar