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Selective Laser Melting for Metal Matrix Composites explains in detail the essential preparation and characterization methods for this technology, and explores a range of innovative applications. The subject covered by this book has been the focus of increasing levels of research both in industry and academia globally. The authors have drawn on their influential cutting-edge research to provide a much-needed guide for those investigating or applying this technology. The novel material preparation methodologies addressed here provide new opportunities to expand the applications of additive manufacturing, particularly in industries such as aerospace, medical, automotive, and electronics. These applications, as well as the theory behind this technology are also covered in this book, providing a complete guide which is appropriate for engineers in industry as well as r
Metallic composites. --- Lasers --- Fusion. --- Industrial applications. --- Melting --- Chemistry, Physical and theoretical --- Metal composites --- Metal matrix composites --- Composite materials --- Metals
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"Graphene Oxide-Metal Oxide and other Graphene Oxide-Based Composites in Photocatalysis and Electrocatalysis reflects on recent progress and challenges in graphene-metal oxide composites. The book reviews synthetic strategies, characterization methods and applications in photocatalysis and electrocatalysis. Graphene-metal oxides, graphene-novel metals and other composites intended for sustainable energy production, energy storage, and environmental development such as H2 production, CO2 reduction, pollutant removal, supercapacitors and lithium ion batteries are covered. Overall, this book presents a comprehensive, systematic, and up-to-date summary on graphene oxide-based materials."--
Graphene. --- Carbon composites. --- Metallic composites. --- Metal composites --- Metal matrix composites --- Composite materials --- Metals --- Carbon --- Polycyclic aromatic hydrocarbons --- Photocatalysis --- Electrocatalysis --- Materials.
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This book provides a complete review of the current state of the art in the field of high entropy alloys (HEA). The conventional approach to alloy design is to select one principal element and add elements to it in minor quantities in order to improve the properties. In 2004, Professor J.W. Yeh and his group first reported a new approach to alloy design, which involved mixing elements in equiatomic or near-equiatomic proportions, to form multi-component alloys with no single principal element. These alloys are expected to have high configurational entropy and hence were termed as ""high ent
Manufacturing processes. --- Materials science. --- Materials. --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Metallic composites. --- Alloys. --- Industrial processing --- Manufacture --- Process engineering (Manufactures) --- Processes, Manufacturing --- Processing, Industrial --- Production processes --- Industrial arts --- Production engineering --- Machine-tools --- Materials --- Material science --- Physical sciences --- Metallic alloys --- Metallic composites --- Metals --- Phase rule and equilibrium --- Amalgamation --- Microalloying --- Metal composites --- Metal matrix composites --- Composite materials
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Modern scientific and technological fields are frequently of an interdisciplinary nature, and the field of fibrous composites is no exception. Unlike fibre-reinforced plastics, the family of metal- and ceramic-based composites is still quite a new group of materials with a large variety of mechanical and physical properties. Up until now it has been difficult to produce these materials as the necessary technical information has not been well documented. The main purpose of this book is to link together fabrication, structure and properties chains, so as to clarify which structure provides th
Metallic composites. --- Ceramic-matrix composites. --- Composites à matrice métallique --- Composites à matrice céramique --- Plastics - Molding. --- Plastics--Molding. Polymeric composites. --- Polymeric composites. --- Plastics --- Polymeric composites --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Chemical Engineering --- Molding --- Metallic composites. Ceramic-matrix composites. --- Metallic composites --- Ceramic-matrix composites --- Materials Science --- Composites à matrice métallique --- Composites à matrice céramique --- Molding. --- Composite polymeric materials --- Polymer-matrix composites --- Reinforced plastics --- Casting of plastics --- Molding (Plastics) --- Plastic molding --- Molding (Chemical technology) --- Ceramic materials --- Composite materials --- Metal composites --- Metal matrix composites --- Metals
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