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2 produkter
2 116 kr
Skickas inom 7-10 vardagar
Ceramic materials are inorganic and non-metallic porcelains, tiles, enamels, cements, glasses and refractory bricks. Today, "ceramics" has gained a wider meaning as a new generation of materials influence on our lives; electronics, computers, communications, aerospace and other industries rely on a number of their uses. In general, advanced ceramic materials include electro-ceramics, optoelectronic-ceramics, superconductive ceramics and the more recent development of piezoelectric and dielectric ceramics. They can be considered for their features including mechanical properties, decorative textures, environmental uses, energy applications, as well as their usage in bio-ceramics, composites, functionally graded materials, intelligent ceramics and so on.Advanced Ceramic Materials brings together a group of subject matter experts who describe innovative methodologies and strategies adopted in the research and development of the advanced ceramic materials. The book is written for readers from diverse backgrounds across chemistry, physics, materials science and engineering, medical science, pharmacy, environmental technology, biotechnology, and biomedical engineering. It offers a comprehensive view of cutting-edge research on ceramic materials and technologies.Divided into 3 parts concerning design, composites and functionality, the topics discussed include: Chemical strategies of epitaxial oxide ceramics nanomaterialsBiphasic, triphasic and multiphasic calcium orthophosphatesMicrowave assisted processing of advanced ceramic compositesContinuous fiber reinforced ceramic matrix compositesYytria and magnesia doped alumina ceramicOxidation induced crack healingSWCNTs vs MWCNTs reinforcement agentsOrganic and inorganic wastes in clay brick productionFunctional tantalum oxidesApplication of silver tin research on hydroxyapatite
428 kr
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This book provides a forum for researchers who have been using a variety of electrical measurements as a means to obtain microstructural information about their materials. Microstructure in this context includes features at all length scales - atomic to macroscopic. Even though numerous examples of microstructure/electrical property correlations exist, this book focuses on the myriad of applications that have already been successful. In addition, advances in techniques for the interpretation of data and modelling of materials-related phenomena are emphasized. The effects of percolation and connectivity of electrical paths are of particular interest as they determine the resultant electrical response. These in turn are intimately linked to how a material is processed, what phases it contains, and how the phases are distributed in real space. All classes of materials are covered including semiconductors, electroceramics, biological materials, polymers, metals, geomaterials and a variety of composites. Topics include: advances in localized electrical testing; semiconductor and microelectronic applications; magnetic and polymeric materials; dielectrics and ferroelectrics; varistors; ionic and mixed conductors and composites and percolation systems.