Dynamic Fatigue Behavior of Alumina Ceramics

알루미나 세라믹스의 동적피로거동

  • 이홍림 (연세대학교, 세라믹공학과) ;
  • 이규형 (연세대학교, 세라믹공학과) ;
  • 박성은 (연세대학교, 세라믹공학과)
  • Published : 1997.10.01

Abstract

The dynamic fatigue behavior of alumina ceramics was observed at room temperature using four point bending system. The dynamic fatigue fracture strength and the dynamic fatigue lifetime were observed as a function of crosshead speed and the notch length. The notched specimen showed the smaller deviation in dynamic fatigue fracture strength than the unnotched specimen. The crack growth exponent n and the material constant A of the notched specimen could be represented as functions of the notch length. Fracture strength of the specimen calculated from the notch length, when the notch length was regarded as the crack size, was in good agreement with the measured 4 point bending strength. Fracture surface of the specimen showed the different fracture modes according to the crosshead speed. The four point flexural strength, fracture toughness, Young's modulus and Weibull modulus of the alumina were measured as 360 MPa, 3.91 MPa.m1/2, 159GPa, 17.64, respectively.

Keywords

References

  1. 요업재료의 과학과 기술 v.4 no.1;2 세라믹 : 파괴특성의 측정 조경목;박병학;백성기
  2. 엔지니어링 세라믹스 이홍림
  3. J. Am. Ceram. Soc. v.67 no.1 Crack Growth in Silica Glass under Dynamic Loading Y. Hibino;S. Sakaguchi;Y. Tajima
  4. Fracture Mechanics of Ceramics v.4 Fracture Mechanics of Alumina in a Simulated Biological Environment E. M Rockar;B. J. Pletka;R. C. Bradt(ed.);D. P. H. Hasselman(ed.);F F. Lange(ed.)
  5. 日本セラミックス協會學術論文誌 v.98 no.3 Dynamic Fatigue Behavior of Ceramics at Elevated Temperatures Y. Yamauchi;S. Sakai;M. Ito;T. Ohji;W. Kanematsu;S. Ito
  6. J. Mater. Sci. Lett. v.14 Dynamic, static and cyclic fatigue of alumina with indentation-induced flaws S. R. Choi
  7. J. Am. Ceram. Soc. v.66 no.7 Dynamic Fatigue of a Machinable Glass-Cerami c K. K. Smyth;M. B. Magida
  8. J. Mater. Sci. v.30 Modelling of Cyclic Fatigue Stress for Life Prediction of Structural Ceramics H. L. Lee;S. E. Park;B S. Hahn
  9. J. Meter. Sci. Lett. v.14 Static and Cyclic Fatigue Behaviour in Alumina Ceramics S. E. Park;B. S. Hahn;H. L. Lee
  10. J. Mater. Sci. Lett. v.15 Prediction of Cyclic Fatigue Life in Ceramics S. E Park;B. S. Hahn;H L. Lee
  11. J. Mater. Sci. Lett. v.15 Direct Determination of Crack Growth Exponent and Weibull Modulus from Strength-Probability-Time and Time-Probability-Strength Diagrams S E. Park;B S. Hahn;H L Lee
  12. Fracture Mechanics of Ceramics v.2 Subcritical Crack Growth in Ceramics S M. Wiederhorn;R. C. Bradt(ed.);D. P. H Hasselman(ed.);F. F. Lange(ed.)
  13. Fracture Mechanics of Ceramics v.2 Determination of KIC-factors with Diamond-saw-cut in Ceramic Materials R. F Pabst;R. C. Bradt(ed.);D. P. H. Hasselman(ed.);F F. Lange(ed.)
  14. Modem Ceramic Engineering D. W. Richerson