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This collection commemorates the occasion of the honorary symposium
that celebrated the 75th birthday and lifelong contributions of
Professor K.L. Murty. The topics cover the present status and
recent advances in research areas in which he made seminal
contributions. The volume includes articles on a variety of topics
such as high-temperature deformation behaviors of materials
(elevated temperature creep, tensile, fatigue, superplasticity) and
their micromechanistic interpretation, understanding mechanical
behavior of HCP metals/alloys using crystallographic texture,
radiation effects on deformation and creep of materials, mechanical
behavior of nanostructured materials, fracture and fracture
mechanisms, development and application of small-volume mechanical
testing techniques, and general structure-property correlations.
This book provides a systematic and comprehensive description of
high-entropy alloys (HEAs). The authors summarize key properties of
HEAs from the perspective of both fundamental understanding and
applications, which are supported by in-depth analyses. The book
also contains computational modeling in tackling HEAs, which help
elucidate the formation mechanisms and properties of HEAs from
various length and time scales.
This collection commemorates the occasion of the honorary symposium
that celebrated the 75th birthday and lifelong contributions of
Professor K.L. Murty. The topics cover the present status and
recent advances in research areas in which he made seminal
contributions. The volume includes articles on a variety of topics
such as high-temperature deformation behaviors of materials
(elevated temperature creep, tensile, fatigue, superplasticity) and
their micromechanistic interpretation, understanding mechanical
behavior of HCP metals/alloys using crystallographic texture,
radiation effects on deformation and creep of materials, mechanical
behavior of nanostructured materials, fracture and fracture
mechanisms, development and application of small-volume mechanical
testing techniques, and general structure-property correlations.
This book provides a systematic and comprehensive description of
high-entropy alloys (HEAs). The authors summarize key properties of
HEAs from the perspective of both fundamental understanding and
applications, which are supported by in-depth analyses. The book
also contains computational modeling in tackling HEAs, which help
elucidate the formation mechanisms and properties of HEAs from
various length and time scales.
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