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2016
Conference Proceeding
Title
Advanced and Refractory Ceramics for Energy Conservation and Efficiency
Title Supplement
A collection of papers presented at CMCEE-11, June 14-19, 2015, Vancouver, BC, Canada
Abstract
This volume contains a collection of 19 papers from the 11th International Symposium on Ceramic Materials and Components for Energy and Environmental Applications (CMCEE-11), June 14-19, 2015 in Vancouver, BC, Canada. Papers were presented in the below five symposia from Track 2 on the topic of Ceramics for Energy Conservation and Efficiency: / Advanced Ceramics and Composites for Gas Turbine Engines / Advanced Refractory Ceramic Materials and Technologies / Advanced Ceramic Coatings for Power Systems / Energy Efficient Advanced Bearings and Wear Resistant Materials / Advanced Nitrides and Related Materials for Energy Applications /
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Table of Contents // Preface ix // // ADVANCED CERAMICS AND COMPOSITES FOR GAS TURBINE ENGINES // // Damage of Ceramic Matrix Composites (CMCs) During Machining Operations 3 // R. Goller and A. Rösiger // // CMCS: The Key for Affordable Access to Space 11 // Johannes Petursson and Luis Gonzalez // // Numerical Determination of Effects of Temperature on Infiltration Dynamics of Liquid-Copper and Titanium/Solid-Carbon System 21 // Khurram Iqbal // // Oxidation and High Temperature Resistance of SiC/SiC Composites by NITE-Method 29 // Daisuke Hayasaka, Hirotatsu Kishimoto, Joon-Soo Park, and Akira Kohyama // // High Performance SiC/SiC Component by NITE-Method and Its Application to Energy and Environment 37 // A. Kohyama, D. Hayasaka, H. Kishimoto, and J. S. Park // // Ceramic Matrix Composites: Concurrent Development of Materials and Characterization Tools 53 // G. Ojard, I. Smyth, Y. Gowayed, U. Santhosh, and J. Ahmad // // Fabrication of EBC System with Oxide Eutectic Structure 65 // Shunkichi Ueno, Kyosuke Seya, and Byung-Koog Jang // // ADVANCED REFRACTORY CERAMIC MATERIALS AND TECHNOLOGIES // // The Use of Advanced Ceramic Materials in Oil and Gas Applications 75 // Richard A. Clark and Andrew J. Goshe // // Microstructure and Elastic Properties of Highly Porous Mullite Ceramics Prepared with Wheat Flour 83 // E. Gregorová, W. Pabst, and T. Uhlíová // // The Use of Advanced Refractory Ceramic Materials to Address Industrial Energy Efficiency Challenges 95 // J. G. Hemrick // // An Approach for Modeling Slag Corrosion of Lightweight Al2O3-MgO Castables in Refining Ladle 101 // Ao Huang, Huazhi Gu, Zou Yang, Lvping Fu, Pengfei Lian, and Linwen Jin // // Microstructure, Elastic Properties and High-Temperature Behavior of Silica Refractories 113 // W. Pabst, E. Gregorová, T. Uhlíová, V. Neina, J. Klouzek, and I. Sedláová // // Cement Free Magnesia Based Castables versus Magnesia-Spinel Bricks in Cement Rotary Kilns 125 // Jérôme Soudier // // Evaluation of Reoxidation Tendency of Refractory Materials in Steel Metallurgy by a New Test Method Based on Carrier Gas Hot Extraction 139 // Almuth Sax, Lisa Redecker, Stephan Clasen, Peter Quirmbach, and Christian Dannert // // Ceramic and Metal-Ceramic Components with Graded Microstructure 149 // U. Scheithauer, E. Schwarzer, C. Otto, T. Slawik, T. Moritz, and A. Michaelis // // ENERGY EFFICIENT WEAR RESISTANT MATERIALS // // High Speed Formation of Fine Ceramic Layers by Nanoparticles Filler Rod Thermal Spraying 163 // Soshu Kirihara and Kazuto Takai // // Development of Silicon Nitride Bearing Components by Powder Injection Molding using a Novel Binder System 169 // Zhang Weiru, Zheng Yu, Wang Tengfei, Li Bin1, Zou Jingliang, Wei Zhonghua, Zhang Zhe, Sun Feng, and Pompe Robert // // ADVANCED COATINGS // // Stability of -Alumina Photonic Structures Formed at Low Temperatures Utilizing Chromia-Seeding 179 // Robert M. Pasquarelli, Martin Waleczek, Kornelius Nielsch, Gerold A. Schneider, and Rolf Janssen // // Polymer Derived Glass Ceramic Layers for Corrosion Protection of Metals 187 // Milan Parchovianský, Gilvan Barroso, Ivana Petríková, Gunter Motz, Dagmar Galusková, and Dusan Galusek // // Author Index 201 //
Editor(s)
Corporate Author
American Ceramic Society -ACerS-, Westerville/Ohio