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Effect of water environment and cyclic loading on fatigue crack growth of alumina and zirconia

机译:水环境与循环载荷对氧化铝和氧化锆疲劳裂纹生长的影响

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The lifetime prediction of ceramics has been discussed on the basis of the relationship between the crack velocity, V, and the stress intensity factor K{sub}I. In the present study, crack growth tests by double torsion (DT) method were carried out under static and cyclic loadings in order to examine the effect of both water environment and stress cycling on the K{sub}I-V characteristics for alumina and zirconia. In both materials in static and cyclic loading crack velocity in water was higher than that in air, and that tendency was more remarkable in zirconia. In addition, the decrease in crack propagation parameter n and the increase in crack velocity due to cyclic stress were clearly observed in both materials in air and water environment. The K{sub}I-V characteristics determined by double torsion method were used to predict time-to-failure under static and cyclic loading of alumina and zirconia ceramics. The predictions agreed qualitatively with the experimental results.
机译:已经基于裂缝速度,V和应力强度因子k {Sub} I之间的关系讨论了陶瓷的寿命预测。 在本研究中,通过双重扭转(DT)方法在静态和循环载体下进行裂纹生长试验,以检查水环境和应力循环对氧化铝和氧化锆的k {sub} I-V特征的影响。 在水中的两种材料中,水中的循环加载裂纹速度高于空气中的裂纹速度,并且在氧化锆中更加显着。 此外,在空气和水环境中的两种材料中,清楚地观察到裂纹传播参数N和由于循环应力引起的裂缝速度的降低。 通过双扭转方法确定的K {亚} I-V特性用于预测氧化铝和氧化锆陶瓷的静态和循环负载下的失效。 预测与实验结果定制了。

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