Metal-Reinforced Ceramics Books

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Metal Reinforced Ceramics


Metal Reinforced Ceramics
  • Author : Andrew John Ruys
  • Publisher : Woodhead Publishing
  • Release : 2020-11-07
  • ISBN : 9780081028704
  • Language : En, Es, Fr & De
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Metal-Reinforced Ceramics covers the principle of metal-fiber-reinforced ceramics, a well-known topic in the field of reinforced concrete. Much of the work that has been done has remained unpublished, hidden in industrial company archives due to the commercial sensitivity associated with the respective technologies that prevailed at the time, which no longer applies today. This book will discuss advanced technologies that have largely been undocumented before in a broad range of industrial application areas, with updates on alumina, silicon carbide, boron carbide, tungsten carbide, fused silica, and carbon-based ceramics which are hard, heat resistant, wear resistant, and chemically durable. Provides detailed information on fundamental principles, advanced processing technologies and industrial applications Features comprehensive industrial knowledge not usually in the public domain from the author’s experience spanning more than three decades Features armor ceramics, bioceramics, aerospace, mining and architectural ceramic applications

Metal Reinforced Ceramic Radome


Metal Reinforced Ceramic Radome
  • Author : Leon M. Atlas
  • Publisher :
  • Release : 1958
  • ISBN : OCLC:162232590
  • Language : En, Es, Fr & De
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Carbon Nanotube Reinforced Composites


Carbon Nanotube Reinforced Composites
  • Author : Sie Chin Tjong
  • Publisher : John Wiley & Sons
  • Release : 2009-04-08
  • ISBN : 9783527627004
  • Language : En, Es, Fr & De
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Providing a broad insight into the potential applications of carbon nanotubes with metals and ceramic materials as a matrix, this book focuses on the preparation and the microstructural, physical, and mechanical characterizations of such novel nanocomposites. It features information on current synthesis and structure-property-relationships of metals and ceramics reinforced with CNT, organizing the vast array of surveys scattered throughout the literature in a single monograph. With its laboratory protocols and data tables this is invaluable reading for research workers and academics, as well as for applied scientists and industry personnel.

The Microscopic Origins of Toughness and Impact Resistance in Metal Reinforced Ceramics


The Microscopic Origins of Toughness and Impact Resistance in Metal  Reinforced Ceramics
  • Author :
  • Publisher :
  • Release : 1990
  • ISBN : OCLC:227762935
  • Language : En, Es, Fr & De
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It has been shown that fracture resistance in the metal-reinforced ceramics WC/Co, Al2O3/Al, and B4C/Al arises from both plasticity and crack bridging. The theoretical basis has been laid for interpreting high resolution measurements of displacement fields and crack opening profiles to deduce the proportion of toughening due to each of these mechanisms in detail. Preliminary analysis accounting for plasticity alone has been presented for data for WC/Co. Various theoretical results have been obtained concerning the inverse problem of deducing bulk plastic strain fields from surface displacement measurements and deducing bridging tractions from measured crack opening profiles. (JS).

Metal and Ceramic Matrix Composites


Metal and Ceramic Matrix Composites
  • Author : Brian Cantor
  • Publisher : CRC Press
  • Release : 2003-11-01
  • ISBN : 9781420033977
  • Language : En, Es, Fr & De
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With contributions from leading experts in their respective fields, Metal and Ceramic Matrix Composites provides a comprehensive overview of topics on specific materials and trends. It is a subject regularly included as a final year option in materials science courses and is also of much industrial and academic interest. The book begins with a selection of chapters describing the most common commercial applications of composite materials, including those in the aerospace, automotive, and power generation industries. Section 2 outlines manufacturing and processing methods used in the production of composite materials ranging from basic aluminium matrix composites, through particle reinforced composites, to composites using novel matrix fibres such as titanium-silicon carbide and ceramics. Section 3 is devoted to the mechanical behaviour of different matrix materials and structure-property relations, with particular attention paid to failure and fracture mechanisms. The final section considers those new fibres and composite materials currently in development, including high strength copper composites, porous particle composites, active composites, and ceramic nanocomposites.