日本機械学会論文集 A編
Online ISSN : 1884-8338
Print ISSN : 0387-5008
TiNi繊維含有インテリジェントマテリアルのき裂閉鎖機構のマイクロメカニックス解析:第2報, TiNi繊維の形状記憶収縮過程における応力拡大係数の評価
小野 裕之荒木 栄敏齊藤 憲司
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ジャーナル フリー

2000 年 66 巻 650 号 p. 1894-1900

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In the previous study, micromechanical modeling of the intelligent material containing TiNi fibers was performed and the stress intensity factor K1 could be expressed in terms of the magnitude of shape memory shrinkage of fibers and the thermal expansion strain occurred in the material. In this study, by using the analytical results, the value of K1 will be numerically calculated. As a result, we can see that the K1 value decreases with increasing in the shrink strain of fibers. This tendency agree with that of the experimental result obtained by Shimamoto et al. Moreover, it can be seen that there exists the optimal value of shrink strain of fibers to make the K1 value zero. The change in K1 with temperature during heating process to the inverse austenitic temperature of TiNi fiber is also consistent with the experimental result. The results obtained can be explained by the shrink strain, the thermal expansion strain, and the elastic moduli of TiNi fiber. These results may be useful in designing the intelligent material containing TiNi fibers from the viewpoint of crack closure.

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