This collection of 33 papers deals with mechanical behaviors associated with systems ranging from diamond reinforced silicon carbide to rare earth pyrosilicates. Presented at The Mechanical Behavior and Performance of Ceramics & Composites Symposium in January 2012 during the 36th International Conference on Advanced Ceramics and Composites (ICACC), it offers researchers from around the world the opportunity to explore new and emerging issues in all aspects of the field.
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Dileep Singh, Argonne National Laboratory.
Jonathan Salem, NASA Glenn Research Center.
Explores new discoveries and current challenges in the field
The Mechanical Behavior and Performance of Ceramics & Composites Symposium was held in January 2012 during the 36th International Conference on Advanced Ceramics and Composites (ICACC) in Daytona Beach, Florida. It offered researchers from around the world in academia, industry, and government the opportunity to explore new and emerging issues in all aspects of the field. Moreover, this long-standing symposium served as a forum for examining and evaluating solutions to overcome current challenges.
This issue focuses on the practical aspects of real-world engineering applications of ceramics. In addition, it deals with mechanical behaviors associated with systems ranging from diamond reinforced silicon carbide to rare earth pyrosilicates. Specific topics addressed at the symposium include:
Detailed diagrams and illustrations throughout this issue help readers grasp key mechanical behavior and performance issues. Moreover, there are references at the end of each paper to facilitate further research into each individual topic.
This issue represents one of nine CESP issues published from the 36th ICACC meeting. ICACC is the world's most prominent international meeting dedicated to advanced structural, functional, and nanoscopic ceramics, composites, and other emerging ceramic materials and technologies. ICACC has been organized each year by The American Ceramic Society and The American Ceramic Society's Engineering Ceramics Division since 1977.
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Hardcover. Condizione: Very Good. 2nd Edition. Hardcover, xiii + 326 pages, NOT ex-library. Printed in the USA. Minor printing imperfection: gentle creasing along the side edge of first leaves (up to page 12). Else book is very good, clean and bright throughout with unmarked text, free of inscriptions and stamps, firmly bound. Issued without a dust jacket. -- This collection of 33 papers deals with mechanical behaviors associated with systems ranging from diamond reinforced silicon carbide to rare earth pyrosilicates. Presented at The Mechanical Behavior and Performance of Ceramics & Composites Symposium in January 2012 during the 36th International Conference on Advanced Ceramics and Composites (ICACC), it offers researchers from around the world the opportunity to explore new and emerging issues in all aspects of the field. -- Contents: Part I: Nondestructive Evaluation of Ceramics Systems -- Damage Sensitivity and Acoustic Emission of SiC/SiC Composite During Tensile Test and Static Fatigue at Intermediate Temperature after Impact Damage; Determination of Acoustic Emission Sources Energy and Application towards Lifetime Prediction of Ceramic Matrix Composites; Nondestructive Evaluation of Thermal Barrier Coatings by Optical and Thermal Imaging Methods; Visualization of Internal Defects in Ceramic Products by using a UT Probe Array; Evaluation of Ceramic Materials and Joints using UT and X-Ray; Investigation of Non-Destructive Evaluation Methods Applied to Oxide/Oxide Fiber Reinforced Ceramic Matrix Composite; -- Part II: Wear, Chipping, and Fatigue of Ceramics and Composites -- Edge Chip Fracture Resistance of Dental Materials; High Pressure Seawater Impingement Resistance of Low Silica Aluminum Oxides; Wear Behavior of Ceramic/Metal Composites; Use of Ceramic Sliding Systems in a Prototype Gasoline Pump with Operating Pressures of up to 80 MPa; Machinability Studies of AI/SiC/B4C Metal Matrix Hybrid Composites using PCD 1600 Grade Insert; Fretting Fatigue Failure of Engineering Ceramics; -- Part III: Microstructure and Mechanical Properties of Monolithic and Composite Systems -- Low CTE and High Stiffness Diamond Reinforced SiC Based Composites with Machineable Surfaces for Mirrors and Structures; Tailoring Microstructures in Mullite for Toughness Enhancement; Microstructures of La-Doped Low Thermal Expansion Cordierite Ceramics; Strategies to Optimize the Strength and Fracture Resistance of Ceramic Laminates; Investigation of Critical Fiber Length in Phenol Matrix Based Short Fiber CFRP by Double Overlap Joints; Mechanical and Microstructural Characterization of C/C-SiC Manufactured Via Triaxial and Biaxial Braided Fiber Preforms; Influence of Fiber Fabric Density and Matrix Fillers as well as Fiber Coating on the Properties of OXIPOL Materials; Weave and Fiber Volume Effects in a PIP CMC Material System; Innovative Clay-Cellulosic Biosourced Composite: Formulation and Processing; Processing and Testing Re2Si207 Matrix Composites; Reaction Bonded Si/SiB6: Effect of Carbon Additions on Composition and Properties; Kinetics of Passive Oxidation of Hi-NICALON-S SiC Fibers in Wet Air: Relationships between Si02 Scale Thickness, Crystallization, and Fiber Strength; Study on the Stiffness of Comeld Composites Joints; High-Temperature Interlaminar Tension Test Method Development for Ceramic Matrix Composites; Tensile Fracture Mechanism of Silicon Impregnated C/C Composite; Effects of Target Supports on Foreign Object Damage in an Oxide/Oxide CMC; Experimental and Numerical Study on Application of a CMC Nozzle for High Temperature Gas Turbine; Author Index. Codice articolo 005616
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Condizione: New. This collection of 33 papers deals with mechanical behaviors associated with systems ranging from diamond reinforced silicon carbide to rare earth pyrosilicates. Editor(s): Singh, Dileep; Salem, Jonathan. Series: Ceramic Engineering and Science Proceedings. Num Pages: 340 pages, black & white tables, figures. BIC Classification: TDCQ. Category: (P) Professional & Vocational. Dimension: 236 x 163 x 23. Weight in Grams: 622. . 2012. 1st Edition. Hardcover. . . . . Codice articolo V9781118205884
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