Advanced Ceramic Coatings and Materials for Extreme

Exploring complicated ceramic coatings and ultra-high temperature ceramic fabrics, this factor brings readers up to date with very important new and rising findings, fabrics, and functions. the 19 papers during this factor originate from symposia and one concentrated consultation held in January 2012, throughout the thirty sixth overseas convention on complex Ceramics and Composites (ICACC). With contributions from major ceramics and fabrics researchers from around the globe, this factor explores the newest advances and key demanding situations in complicated thermal and environmental coating processing and characterizations, complicated put on corrosion-resistant, nanocomposite, and multi-functional coatings, thermal defense platforms, and more.

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Lubricants used in various tribological applications are usually formulated with additives for optimal performance1'2. The commercial oil lubricants consist primarily of a basestock and an additives package. The basestock can be mineral-oil based or synthetic-oil (such as poly-alpha-olefin (PAO), ester or polyol) based. Additives normally accounts for 4-10% of the total weight in fully formulated lubricants. Most of the efforts in term of lubricant formulation are devoted to producing the right combination of basestock and additives with a particular or desirable functionality.

Deshpande, A. G. Evans, "Inelastic Deformation and Energy Dissipation in Ceramics: A Mechanism-Based Constitutive Model," J. Mech. Phys. Solids, 56 3077-3100 (2008). 31. J. C. LaSalvia, J. W. McCauley, "Inelastic Deformation and Damage in Structural Ceramics Subjected to High-Velocity Impact," Int. J. Appl. Ceram. , 7[5] 595-605 (2010). 32. S. R. Choi, D. Zhu, R. A. Miller, "Mechanical Properties/Database of Plasma-Sprayed Z1O28wt% Y 2 0 3 Thermal Barrier Coating," Int. J. Appl. Ceram. Technol, 1[4] 330-342 (2004).

Appl. Ceram. , 7[5] 595-605 (2010). 32. S. R. Choi, D. Zhu, R. A. Miller, "Mechanical Properties/Database of Plasma-Sprayed Z1O28wt% Y 2 0 3 Thermal Barrier Coating," Int. J. Appl. Ceram. Technol, 1[4] 330-342 (2004). 33. R. W. , 41 [4] 399-410 (1998). 34. M. Fathy, W. Tabakoff, "Computation and Plotting of Solid Particle Flow in Rotating Cascades," Computers & Fluids, 2[1-A] 1-15 (1974). 35. X. Chen, M. Y. He, I. Spitsberg, N. A. Fleck, J. W. Hutchinson, A. G. Evans, "Mechanisms Governing the High Temperature Erosion of Thermal Barrier Coatings," Wear, 256 735-746 (2004).

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