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CRACK PROPAGATION BEHAVIOR AND LIFETIME PREDICTION IN ALUMINA AND ZIRCONIA

CRACK PROPAGATION BEHAVIOR AND LIFETIME PREDICTION IN ALUMINA AND ZIRCONIA
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摘要 The lifetime prediction of ceramics is discussed on the basis of therelationship between stress intensity factor K_1 and crack velocity nu. The effects of waterenvironment, the cyclic loading and microstructure of material on K_1-nu characteristics are studiedby carrying out the crack growth tests by the double torsion (DT) method under the static andcyclic loading in both environments of air and water for alumina and zirconia. K_1-nucharacteristics determined by the double torsion method are used to predict time-to-failure underthe cyclic loading of alumina and zirconia ceramics. The predictions agree qualitatively with theexperimental results. The lifetime prediction of ceramics is discussed on the basis of therelationship between stress intensity factor K_1 and crack velocity nu. The effects of waterenvironment, the cyclic loading and microstructure of material on K_1-nu characteristics are studiedby carrying out the crack growth tests by the double torsion (DT) method under the static andcyclic loading in both environments of air and water for alumina and zirconia. K_1-nucharacteristics determined by the double torsion method are used to predict time-to-failure underthe cyclic loading of alumina and zirconia ceramics. The predictions agree qualitatively with theexperimental results.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2002年第3期284-288,共5页 中国机械工程学报(英文版)
关键词 ALUMINA ZIRCONIA FATIGUE Crack growth Lifetime prediction Alumina Zirconia Fatigue Crack growth Lifetime prediction
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参考文献3

  • 1[1]Evans A G,Wiederhorn S M. Crack propagation and failure prediction in silicon nitride at elevated temperatures. J.Mater.Sci., 1974, 9:270~278
  • 2[2]Evans A G. A method for evaluating the time-dependent failure characteristics of brittle materials and its application to polycrystalline alumina. J.Mater.Sci., 1972, 7:1 137~ 1 146
  • 3[3]Evans A G,Fuller E R. Crack propagation in ceramic materials under cyclic loading conditions. Metall.Trans., 1974, 5:27~37

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