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Original Articles

Theories of Creep in Ceramics

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Pages 129-187 | Published online: 27 Sep 2006

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M. Steen. (1999) Fractography and fracture mechanics property assessment of advanced structural ceramics. International Materials Reviews 44:5, pages 165-216.
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Articles from other publishers (29)

Cheng Mei & John W. Rudnicki. (2023) Microphysical Modeling of Fault Slip and Stability Transition in Hydrothermal Conditions. Geophysical Research Letters 50:13.
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Chenhong Ma, Yong Li, Peng Jiang, Wendong Xue & Jialin Sun. (2022) Creep behaviour of an Al–Si–Al2O3 composite based on phase evolution at 1300oC. Ceramics International 48:2, pages 2337-2344.
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Zhiping Pan, Jianzheng Guo, Shuangming Li, Jiangying Xiong & Anping Long. (2022) Experimental study on high temperature performances of silica-based ceramic core for single crystal turbine blades. Ceramics International 48:1, pages 548-555.
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Guang Zhao, Kehui Hu, Qian Feng & Zhigang Lu. (2021) Creep mechanism of zircon-added silica ceramic cores formed by stereolithography. Ceramics International 47:12, pages 17719-17725.
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Jianye Chen, A. R. Niemeijer & Christopher J. Spiers. (2021) Microphysical Modeling of Carbonate Fault Friction at Slip Rates Spanning the Full Seismic Cycle. Journal of Geophysical Research: Solid Earth 126:3.
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Lucas Teixeira, Soheil Samadi, Jean Gillibert, Shengli Jin, Thomas Sayet, Dietmar Gruber & Eric Blond. (2020) Experimental Investigation of the Tension and Compression Creep Behavior of Alumina-Spinel Refractories at High Temperatures. Ceramics 3:3, pages 372-383.
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Junfeng Gu, Ji Zou, Jianghao Liu, Hao Wang, Jinyong Zhang, Weimin Wang & Zhengyi Fu. (2020) Sintering highly dense ultra-high temperature ceramics with suppressed grain growth. Journal of the European Ceramic Society 40:4, pages 1086-1092.
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Matthias Haug, Florian Bouville, Cristina Ruiz-Agudo, Jonathan Avaro, Denis Gebauer & André R. Studart. (2020) Cold densification and sintering of nanovaterite by pressing with water. Journal of the European Ceramic Society 40:3, pages 893-900.
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Antonio Vinci, Luca Zoli, Diletta Sciti, Jeremy Watts, Greg E. Hilmas & William G. Fahrenholtz. (2019) Influence of fibre content on the strength of carbon fibre reinforced HfC/SiC composites up to 2100 °C. Journal of the European Ceramic Society 39:13, pages 3594-3603.
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Antonio Vinci, Luca Zoli, Diletta Sciti, Jeremy Watts, Greg E. Hilmas & William G. Fahrenholtz. (2019) Mechanical behaviour of carbon fibre reinforced TaC/SiC and ZrC/SiC composites up to 2100°C. Journal of the European Ceramic Society 39:4, pages 780-787.
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S.M. Wiederhorn. 2016. Encyclopedia of Materials: Technical Ceramics and Glasses. Encyclopedia of Materials: Technical Ceramics and Glasses 908 910 .
S.M. Wiederhorn. 2016. Reference Module in Materials Science and Materials Engineering. Reference Module in Materials Science and Materials Engineering.
P. Pilate, V. Lardot, F. Cambier & E. Brochen. (2015) Contribution to the understanding of the high temperature behavior and of the compressive creep behavior of silica refractory materials. Journal of the European Ceramic Society 35:2, pages 813-822.
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Marc W. Bird, Robert P. Aune, Feng Yu, Paul F. Becher & Kenneth W. White. (2013) Creep behavior of a zirconium diboride–silicon carbide composite. Journal of the European Ceramic Society 33:13-14, pages 2407-2420.
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František Lofaj & Sheldon M. Wiederhorn. 2013. Ceramics Science and Technology. Ceramics Science and Technology 577 599 .
G. Dusserre, F. Nazaret, L. Robert & T. Cutard. (2013) Applicability of image correlation techniques to characterise asymmetric refractory creep during bending tests. Journal of the European Ceramic Society 33:2, pages 221-231.
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W. Roger Cannon, Ernst Gugel, Gerhard Leimer, Gerhard Woetting & Robert B. Heimann. 2000. Ullmann's Encyclopedia of Industrial Chemistry. Ullmann's Encyclopedia of Industrial Chemistry.
František Lofaj & Sheldon M. Wiederhorn. 2010. Ceramics Science and Technology. Ceramics Science and Technology 577 599 .
B. Wilshire & M.R. Bache. (2008) Creep of monolithic and fibre-reinforced silicon carbide. Journal of the European Ceramic Society 28:7, pages 1535-1542.
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Christopher M. Chen, Douglas L. Bennett, Michael F. Carolan, Edward P. Foster, William L. Schinski & Dale M. Taylor. 2004. Natural Gas Conversion VII, Proceedings of the 7th Natural Gas Conversion Symposium. Natural Gas Conversion VII, Proceedings of the 7th Natural Gas Conversion Symposium 55 60 .
John M. Sebastian, Chiajen Lai, William W. Graessley & Richard A. Register. (2002) Steady-Shear Rheology of Block Copolymer Melts and Concentrated Solutions:  Disordering Stress in Body-Centered-Cubic Systems. Macromolecules 35:7, pages 2707-2713.
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John M. Sebastian, William W. Graessley & Richard A. Register. (2002) Steady-shear rheology of block copolymer melts and concentrated solutions: Defect-mediated flow at low stresses in body-centered-cubic systems. Journal of Rheology 46:4, pages 863.
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B. Sudhir & Atul H. Chokshi. (2004) Compression Creep Characteristics of 8‐mol%‐Yttria‐Stabilized Cubic‐Zirconia. Journal of the American Ceramic Society 84:11, pages 2625-2632.
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S.M. Wiederhorn. 2001. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 6283 6284 .
D. Sherman & D. Brandon. 2000. Handbook of Ceramic Hard Materials. Handbook of Ceramic Hard Materials 66 103 .
G. FANTOZZI, J. CHEVALIER, C. OLAGNON & J.L. CHERMANT. 2000. Comprehensive Composite Materials. Comprehensive Composite Materials 115 162 .
R. D. McDonnell, C. J. Peach & C. J. Spiers. (1999) Flow behavior of fine-grained synthetic dunite in the presence of 0.5 wt% H 2 O . Journal of Geophysical Research: Solid Earth 104:B8, pages 17823-17845.
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Ralph F. Jr. Krause, William E. Luecke, Jonathan D. French, Bernard J. Hockey & Sheldon M. Wiederhorn. (2004) Tensile Creep and Rupture of Silicon Nitride. Journal of the American Ceramic Society 82:5, pages 1233-1241.
Crossref
David S. Wilkinson. (2005) Creep Mechanisms in Multiphase Ceramic Materials. Journal of the American Ceramic Society 81:2, pages 275-299.
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