By It-Meng Low
ISBN-10: 1845699912
ISBN-13: 9781845699918
MAX levels are a brand new category of fabrics that express a distinct blend of features of either ceramics and metals. MAX stages are nano-layered ceramics with the final formulation Mn+1AXn where "M" is an early transition steel, "A" is a group-A aspect and "X" is both carbon or nitrogen. Similiar to ceramics, they own low density, low thermal growth coefficient, excessive modulus and excessive power, and reliable extreme temperature oxidation resistance. Like metals, they're stable electric and thermal conductors, with ease machinable, tolerant to break and immune to thermal shock.I.M. Low has compiled 15 peer-reviewed chapters, written via a number one examine of foreign acceptance on MAX stages. The participants speak about synthesis, characterisation, modeling, microstructures, houses, ab-initio calculations and purposes of MAS stages and ambitions the continued study of complicated metals and ceramics.
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Sample text
Minimizing the formation of intermediate phases during synthesis of Ti3AlC2 is found to be the best way to shorten the synthesis time, to reduce processing temperature, as well as to increase the purity for Ti3AlC2. It is shown that the formation of Ti3AlC as an intermediate carbide is not favourable for the synthesis of high-purity Ti3AlC2. Chapter 5: This chapter describes the fabrication of hot-pressed Ti2AlN/TiAl composites using Ti, Al and TiN powders as starting materials. Compared with TiAl matrix, the hardness, the elastic modulus and the high-temperature compressive strength of Ti2AlN/TiAl composites are improved greatly and they are all enhanced with increasing the volume fraction of Ti2AlN particles.
Moreover, the carrier’s densities and their mobilities have been estimated. Band xxxii Published by Woodhead Publishing Limited 2012 Preface structure calculations are shown to be in good agreement with experience, and superconductivity has also been observed for several compounds. Chapter 8: This chapter employs ab initio approaches to review some important physical properties of nanolaminated ternary carbides MAX phases. An all electron full-potential linearized augmented plane-wave method within the generalized gradient approximation and the density functional theory approaches have been used to explore the existence of a steric effect on the M site in these compounds.
He has received several awards including: Outstanding Innovation Award, National Taiwan University (2008); Outstanding Technology Transferring Award, National Science Council, Taiwan (2008, 2010); and Academician of World Academy of Ceramics (WAC). Erdong Wu is a professor at the Institute of Metal Research, Chinese Academy of Science. He gained his PhD at the Flinders University of South Australia, and has been a postdoctoral fellow and senior research fellow at several universities in Australia.
Advances in science and technology of Mn+1AXn phases by It-Meng Low
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