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Ceramics are a versatile material, more so than is widely known.
They are thermal resistant, poor electrical conductors, insulators
against nuclear radiation, and not easily damaged, making ceramics
a key component in many industrial processes. MAX Phases and
Ultra-High Temperature Ceramics for Extreme Environments
investigates a new class of ultra-durable ceramic materials, which
exhibit characteristics of both ceramics and metals. Readers will
explore recent advances in the manufacturing of ceramic materials
that improve their durability and other physical properties,
enhancing their overall usability and cost-effectiveness. This book
will be of primary use to researchers, academics, and practitioners
in chemical, mechanical, and electrical engineering. This book is
part of the Research Essentials collection.
Advances in Ceramic Matrix Composites, Second Edition, delivers an
innovative approach to ceramic matrix composites, focusing on the
latest advances and materials developments. As advanced ceramics
and composite materials are increasingly utilized as components in
batteries, fuel cells, sensors, high-temperature electronics,
membranes and high-end biomedical devices, and in seals, valves,
implants, and high-temperature and wear components, this book
explores the substantial progress in new applications. Users will
gain knowledge of the latest advances in CMCs, with an update on
the role of ceramics in the fabrication of Solid Oxide Fuel Cells
for energy generation, and on natural fiber-reinforced eco-friendly
geopolymer and cement composites. The specialized information
contained in this book will be highly valuable to researchers and
graduate students in ceramic science, engineering and ceramic
composites technology, and engineers and scientists in the
aerospace, energy, building and construction, biomedical and
automotive industries.
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 presentedWritten by highly knowledgeable and well-respected
researchers in the fieldDiscusses new and unusual properties
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