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Advances In Science And Technology Of Mn1axn Phases

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Advances in Science and Technology of Mn 1AXn Phases

Advances in Science and Technology of Mn 1AXn Phases Book
Author : I M Low
Publisher : Elsevier
Release : 2012-10-26
ISBN : 085709601X
Language : En, Es, Fr & De

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Book Description :

Advances in Science and Technology of Mn+1AXn Phases presents a comprehensive review of synthesis, microstructures, properties, ab-initio calculations and applications of Mn+1AXn phases and targets the continuing research of advanced materials and ceramics. An overview of the current status, future directions, challenges and opportunities of Mn+1AXn phases that exhibit some of the best attributes of metals and ceramics is included. Students of materials science and engineering at postgraduate level will value this book as a reference source at an international level for both teaching and research in materials science and engineering. In addition to students the principal audiences of this book are ceramic researchers, materials scientists and engineers, materials physicists and chemists. The book is also an invaluable reference for the professional materials and ceramics societies. The most up-to-date and comprehensive research data on MAX phases is presented Written by highly knowledgeable and well-respected researchers in the field Discusses new and unusual properties

Max Phases

Max Phases Book
Author : It-Meng Low,Yanchun Zhou
Publisher : Nova Science Pub Incorporated
Release : 2012
ISBN : 9781613241820
Language : En, Es, Fr & De

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Book Description :

This book deals with a new class of ceramic materials, the MAX Phases, which are unique new ternary carbides and nitrides. These materials exhibit a unique combination of characters of both ceramics and metals. Like ceramics, they have low density, low thermal expansion coefficient, high modulus and high strength, and good high-temperature oxidation resistance. Like metals, they are good electrical and thermal conductors, readily machinable, tolerant to damage, and resistant to thermal shock. The unique combination of these interesting properties enables these ceramics to be a promising candidate material for use in many diverse fields, especially in high temperature applications