Fracture Mechanics of Ceramics: Fracture Fundamentals, by J. T. Dickinson, S. C. Langford, L. C. Jensen (auth.), R. C. PDF

By J. T. Dickinson, S. C. Langford, L. C. Jensen (auth.), R. C. Bradt, D. P. H. Hasselman, D. Munz, M. Sakai, V. Ya. Shevchenko (eds.)

ISBN-10: 1461364760

ISBN-13: 9781461364764

ISBN-10: 1461533481

ISBN-13: 9781461533481

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Additional resources for Fracture Mechanics of Ceramics: Fracture Fundamentals, High-Temperature Deformation, Damage, and Design

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S. Shaw, Phys. Rev. Lett. ~, 712-716 (1980). a, 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. 30. 31. 32. 33. 34. 35. 36. 37. 38. 39. 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. S. C. Langford. Ma Zhenyi. and J. T. Dickinson; J. Mater. Research~. 1276 (1989). Robert Shaw. Z. Naturforsch. ~. 80-112 (1981). Alan Wolf, J. B. Swift. H. L. Swinney, and J. A. Vastano, Physica 00,285-317 (1985). B. Dubuc. J. F. Quiniou, C. Roques-Carmes. C. Tricot, and S. W. Zucker, Phys. Rev. A 32, 1500 (1989).

1986). As a consequence the conventional fracture toughness Kr is not longer a material inherent parameter. It is dependen~con test method, specimen type and notch shape. Because of the absence of thermal expansion anisotropy and phase transformations neither microcracking nor R-curve behaviour is expected in cubic materials, and the fracture mechanical research has been concentrated on the above mentioned noncubic ceramics. The fracture surface energy is reported to be independent from grain size (Y203' 8 to 80 ~m; Liang et al.

Ed. 21, 873 (1985). J. Lowell and A. C. Rose-Innes, Adv. Phys. 947 (1980). J. E. Stern. B. D. Terris, H. J. Mamin. and D. Rugar. Appl. Phys. Lett. ~. 2717 (1988). B. D. Terris, J. E. Stern, D. Rugar, and H. J. Mamin, Phys. Rev. Lett. 24, 2669 (1989). A. S. Crasto, R. Corey, J. T. Dickinson, R. V. Subramanian, and Y. Eckstein, Composites Sci. & Technol.. 30. 35 (1987). n. n, 31 50. 51. 52. 53. 54. 55. 56. 57. 58. 59. 60. 61. 62. 63. 64. 65. 32 Ma Zhen-Yi and J. T. Dickinson, "Fracto-emission from embedded interfaces," submitted to 1.

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Fracture Mechanics of Ceramics: Fracture Fundamentals, High-Temperature Deformation, Damage, and Design by J. T. Dickinson, S. C. Langford, L. C. Jensen (auth.), R. C. Bradt, D. P. H. Hasselman, D. Munz, M. Sakai, V. Ya. Shevchenko (eds.)


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