Download PDF by Michael R. Notis (auth.), R. C. Bradt, R. E. Tressler (eds.): Deformation of Ceramic Materials

By Michael R. Notis (auth.), R. C. Bradt, R. E. Tressler (eds.)

ISBN-10: 146134431X

ISBN-13: 9781461344315

ISBN-10: 1461344336

ISBN-13: 9781461344339

This quantity constitutes the lawsuits of a Symposium at the Plastic Deformation of Ceramic fabrics, held on the Pennsylvania country collage, college Park, Pennsylvania, July 17, 18, and 19, 1974. The subject of this convention enthusiastic about unmarried crystal and polycrystalline deformation techniques in ceramic fabrics. The 31 contributed papers by way of fifty two authors, current a present comprehend­ ing of the speculation and alertness of deformation approaches to the research and usage of ceramic fabrics. this system chairmen gratefully recognize the monetary suggestions for the Symposium supplied by means of the USA Atomic strength fee, The nationwide technology origin, and the school of Earth and Mineral Sciences of The Pennsylvania country college. exact acknowledgment is prolonged to Drs. Louis C. Ianniello and Paul okay. Predecki of the AEC and NSF, respectively. in fact, the complaints shouldn't have been attainable with out the wonderful cooperation of the authors in getting ready their manuscripts. detailed appreciation is prolonged to the pro organi­ zation providers supplied by means of the J. Orvis Keller convention middle of The Pennsylvania nation college. specifically, Mrs. Patricia Ewing can be stated for her very good software association and making plans. eventually, we additionally desire to thank our secretaries for the persistence and assist in bringing those lawsuits to press.

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Van der Walt and M. J. Sole, Acta Met. 15, 459 (1967). 52. M. J. Buerger, Amer. Mineral. 15, 21, 35 (1930). 53. H. Mueller, Amer. Mineral. 16, 237 (1931). 54. W. A. Rachinger and A. H. Cottrell, Acta Met. 55. D. J. Gooch and G. W. Groves, Phil. Mag. 28, 623 (1973). 56. P. D. 57. D. J. Gooch and G. W. Groves, J. Mater. Sci. 58. R. E. Tressler and D. J. Barber, J. Amer. Ceram. Soc. 57, 13 (1974). 59. G. V. Berezhkova, Yu. M. Gerasimov, V. G. Govorkov and E. P. Koz1ovsk~a, Phys. Stat. Soc. (a)21, K61 (1974).

0001)<1120> {1120}<1100> {I 01 2 }<1011> {1l0l} <1011> (structural cell) hexagonal Al 2 0 3 18 {101}<10I> {110}<00l> rutile 18,29-32 Ref. 33,34 Ti0 2 {Ill} appears to be cross(30~p plane only. Remarks {l11} fluorite TiH 2 ,ZrH 2 {001}<110> {110}<110> {l11}<110> Slip Systems fluorite Structure Slip Systems (con't) CaF2 ,BaF2 ,SrF2 U0 2 ,Th0 2 Material a. > en »r- -I -< en ;:0 n ~ ;:0 nm z en ~ m -I en -< en z z z Q ~ -I 0 z » "'tJ C en C(graphite) Al 20 3 PbS Si,Ge,InSb,GaSb,ZnS Material {11l}<1l2> {123}<412> {441} (0001)<1100> {lOIl}<1012> Twinnin~stems Twinning Systems {1l21} (morphological cell) b.

The optical properties, being isotropic, are not affected by the texture . The most significant example of texture strengthening among all materials is probably that of graphite fibers. Here a judicious selection of thermal and mechanical treatments starting with appropriate textured fibers has resulted in almost perfect alignment of the basal planes parallel to the fiber axis. (98) Values of Young's modulus as high as 60 x 106 psi and tensile strength as high as 430 x 103 psi have been attained.

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Deformation of Ceramic Materials by Michael R. Notis (auth.), R. C. Bradt, R. E. Tressler (eds.)


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