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Article type: Research Article
Authors: Suzuki, Hiroshi | Waku, Yoshiharu | Nakagawa, Narihito | Akita, Koichi | Moriai, Atsushi | Morii, Yukio
Affiliations: Quantum Beam Science Directorate, Japan Atomic Energy Agency, Tokai, Naka, Ibaraki 319-1195, Japan | Engineering Research Associations for High Performance Gas Turbines, Ube, Yamaguchi 755-0001, Japan | Ube Research Laboratory, Ube Industries, Ltd. Ube, Yamaguchi 755-8633, Japan | Department of Mechanical Systems Engineering, Musashi Institute of Technology, Setagaya, Tokyo 158-8557, Japan
Note: [] Corresponding author. Tel.: + 81-29-282-5997. Fax: + 81-29-282-6018. Email: [email protected]
Abstract: The residual stress in the pure YAG phase was measured on the surface of an Al2O3–Y3Al5O12 (YAG) eutectic composite (Al2O3/YAG–MGC) using low energy synchrotron X-rays. The residual stress in the plane stress condition was significantly different between top and side surfaces of the specimen. In addition, the internal residual stress of the melt growth composite (MGC) was also measured using a neutron diffraction. The residual stress in the YAG phase rose from compression in the solidification direction to tension in the perpendicular direction. The residual stress in the Al2O3 phase was anisotropic compression and there was no tension in any direction. This anisotropic residual stress could be explained by the crystallographic anisotropy of thermal expansion in the Al2O3 phase. However, both phase stresses were not balanced, so that it is expected that there would be a stress distribution in the MGC.
Keywords: MGC, Neutron diffraction, Synchrotron radiation, Residual stress
DOI: 10.1080/10238160701372471
Journal: Journal of Neutron Research, vol. 15, no. 2, pp. 105-112, 2007
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