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Ni-free Ti-based Shape Memory Alloys reviews the fundamental issues
of biomedical beta-type Ti base shape memory and superelastic
alloys, including martensitic transformation, shape memory and
superelastic properties, alloy development, thermomechanical
treatment and microstructure control, and biocompatibility. Some
unique properties, such as large nonlinear elastic behavior and low
Young's modulus, observed in metastable Ti alloys are discussed on
the basis of phase stability. As it is expected that superelastic
Ti alloys will further expand the applications of shape memory
alloys within the biomedical field, this book provides a
comprehensive review of these new findings in Ti-base shape memory
and superelastic alloys.
This book, the first dedicated to this exciting and rapidly growing
field, enables readers to understand and prepare high-quality,
high-performance TiNi shape memory alloys (SMAs). It covers the
properties, preparation and characterization of TiNi SMAs, with
particular focus on the latest technologies and applications in
MEMS and biological devices. Basic techniques and theory are
covered to introduce new-comers to the subject, whilst various
sub-topics, such as film deposition, characterization, post
treatment, and applying thin films to practical situations, appeal
to more informed readers. Each chapter is written by expert
authors, providing an overview of each topic and summarizing all
the latest developments, making this an ideal reference for
practitioners and researchers alike.
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