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Titlebook: Deformation of Ceramic Materials; R. C. Bradt (Associate Professor),R. E. Tressler ( Book 1975 Plenum Press, New York 1975 Al2O3.ceramics.

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書(shū)目名稱(chēng)Deformation of Ceramic Materials
編輯R. C. Bradt (Associate Professor),R. E. Tressler (
視頻videohttp://file.papertrans.cn/265/264846/264846.mp4
圖書(shū)封面Titlebook: Deformation of Ceramic Materials;  R. C. Bradt (Associate Professor),R. E. Tressler ( Book 1975 Plenum Press, New York 1975 Al2O3.ceramics.
描述This volume constitutes the Proceedings of a Symposium on the Plastic Deformation of Ceramic Materials, held at The Pennsylvania State University, University Park, Pennsylvania, July 17, 18, and 19, 1974. The theme of this conference focused on single crystal and polycrystalline deformation processes in ceramic materials. The 31 contributed papers by 52 authors, present a current understand- ing of the theory and application of deformation processes to the study and utilization of ceramic materials. The program chairmen gratefully acknowledge the financial assistance for the Symposium provided by the United States Atomic Energy Commission, The National Science Foundation, and The College of Earth and Mineral Sciences of The Pennsylvania State University. Special acknowledgment is extended to Drs. Louis C. Ianniello and Paul K. Predecki of the AEC and NSF, respectively. Of course, the proceedings would not have been possible without the excellent cooperation of the authors in preparing their manuscripts. Special appreciation is extended to the professional organi- zation services provided by the J. Orvis Keller Conference Center of The Pennsylvania State University. In particular, M
出版日期Book 1975
關(guān)鍵詞Al2O3; ceramics; crystal; deformation; energy; foundation; glass; material; materials; organization; planning;
版次1
doihttps://doi.org/10.1007/978-1-4613-4431-5
isbn_softcover978-1-4613-4433-9
isbn_ebook978-1-4613-4431-5
copyrightPlenum Press, New York 1975
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Slip and Twinning Systems in Ceramic Crystalsbonding and the crystal structure. In this paper these two parameters are used as a basis for reviewing the slip systems in ceramic crystals — the choice of slip systems and the influence of temperature and stoichiometry on the plastic resistance of competing systems. Defects introduced by nonstoich
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Review of Diffusional Creep of ,critically analysed to show the relative conditions where normal and dislocation controlled diffusional creep are important. The behavior at intermediate stresses, when both slip and diffusional creep occur is also discussed.
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Grain Boundary Deformation Processesy, the boundaries act as sources and sinks for vacancies, so that diffusional creep may occur by vacancy flow. Secondly, grain boundary sliding may occur under conditions where diffusional creep is relatively unimportant..The various grain boundary deformation processes are reviewed, and the experim
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Dynamics of Flow of C-Axis Sapphirefound that temperatures in excess of 1600°C were necessary to activate tensile creep of c-axis oriented single crystals while creep via basal slip could be detected at 900°C. Since then, detailed studies of the yielding and flow behavior of alumina single crystals via basal slip have considered the
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Solution Strengthening of MgO Crystalsent cations, Fe. and Ni., have little effect upon yield strength. The strengthening is inconsistent with the elastic theory of Fleischer for pinning of dislocations at tetragonal defects. The solution hardening by ., Cr. and Fe. is quantitatively explained by a recent theory by Gilmań. Strengthening
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