Micromechanical Analysis of Crack Closure Mechanism for Intelligent Material Containing TiNi Fibers : 2nd Report, Numerical Calculation of Stress Intensity Factor in the Process of Shape Memory Shrinkage of TiNi Fibers(Fracture Mechanics)
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概要
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In our previous study, the micromechanical modeling of an intelligent material containing TiNi fibers was performed and the stress intensity factor K_1 at the tip of the crack in the material was expressed in terms of the magnitude of the shape memory shrinkage of the fibers and the thermal expansion strain in the material. In this study, the value of K_1 at the tip of the crack in the TiNi/epoxy material is calculated numerically by using analytical expressions obtained in our first report. As a result, we find that the K_1 value decreases with increasing shrink strain of the fibers, and this tendency agrees with that of the experimental result obtained by Shimamoto et al. (Trans. Jpn. Soc. Mech. Eng., Vol. 65, No. 634 (1999), pp. 1282-1286). Moreover, there exists an optimal value of the shrink strain of the fibers to make the K_1 value zero. The change in K_1 with temperature during the heating process from the reference temperature to the inverse austenitic finishing temperature of TiNi fiber is also consistent with the experimental result. These results can be explained by the changes in the shrink strain, the thermal expansion strain, and the elastic moduli of TiNi fiber with temperature. These results may be useful in designing intelligent materials containing TiNi fibers from the viewpoint of crack closure.
- 一般社団法人日本機械学会の論文
- 2002-07-15
著者
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Saito Kenji
Kyoto Institute of Technology
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Araki Shigetoshi
Department Of Mechanical & System Engineering Kyoto Institute Of Technology
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Ono Hiroyuki
Department Of Mechanical And System Engineering Kyoto Institute Of Technology
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Ono Hiroyuki
Department Of Electronic Chemistry Interdisciplinary Graduate School Of Science And Engineering Toky
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