1.

Record Nr.

UNINA9910735780203321

Autore

Kang Guozheng

Titolo

Thermo-Mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi Shape Memory Alloys [[electronic resource] ] : Experiments, Simulations and Theories / / by Guozheng Kang, Chao Yu, Qianhua Kan

Pubbl/distr/stampa

Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2023

ISBN

981-9927-52-8

Edizione

[1st ed. 2023.]

Descrizione fisica

1 online resource (312 pages)

Collana

Springer Series in Materials Science, , 2196-2812 ; ; 335

Altri autori (Persone)

YuChao

KanQianhua

Disciplina

620.16

Soggetti

Metals

Materials—Fatigue

Materials science—Data processing

Condensed matter

Thermodynamics

Atomic structure 

Molecular structure

Metals and Alloys

Materials Fatigue

Computational Materials Science

Structure of Condensed Matter

Atomic and Molecular Structure and Properties

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di contenuto

Fundamentals of shape memory alloys (SMAs) -- Experimental Observations on Thermo-mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi SMAs -- Molecular Dynamics Simulations on Cyclic Deformation of NiTi SMAs -- Phase Field Simulations on Cyclic Deformation of NiTi SMAs -- Phenomenological Constitutive Models of NiTi SMAs -- Crystal Plasticity-based Constitutive Models of NiTi SMAs -- Fatigue Life-prediction Models of NiTi SMAs.

Sommario/riassunto

Written by leading experts in the field, this book highlights an authoritative and comprehensive introduction to thermo-mechanically



coupled cyclic deformation and fatigue failure of shape memory alloys. The book deals with: (1) experimental observations on the cyclic deformation and fatigue failure in the macroscopic and microscopic scales; (2) molecular dynamics and phase-field simulations for the thermo-mechanical behaviors and underlying mechanisms during cyclic deformation; (3) macroscopic phenomenological and crystal plasticity-based cyclic constitutive models; and (4) fatigue failure models. This book is an important reference for students, practicing engineers and researchers who study shape memory alloys in the areas of mechanical, civil and aerospace engineering as well as materials science.