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Thermo-Mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi Shape Memory Alloys

Posted By: AvaxGenius
Thermo-Mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi Shape Memory Alloys

Thermo-Mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi Shape Memory Alloys: Experiments, Simulations and Theories by Guozheng Kang , Chao Yu , Qianhua Kan
English | PDF (True) | 2023 | 312 Pages | SIBN : 981992751X | 60.5 MB

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.

Non-Equilibrium Phase Transitions Volume 1: Absorbing Phase Transitions (Repost)

Posted By: AvaxGenius
Non-Equilibrium Phase Transitions Volume 1: Absorbing Phase Transitions (Repost)

Non-Equilibrium Phase Transitions Volume 1: Absorbing Phase Transitions by Malte Henkel, Haye Hinrichsen, Sven Lübeck
English | PDF | 2008 | 396 Pages | ISBN : 1402087640 | 6 MB

This book describes two main classes of non-equilibrium phase-transitions: (a) static and dynamics of transitions into an absorbing state, and (b) dynamical scaling in far-from-equilibrium relaxation behaviour and ageing.

Kinetic Theory of Gases in Shear Flows: Nonlinear Transport

Posted By: AvaxGenius
Kinetic Theory of Gases in Shear Flows: Nonlinear Transport

Kinetic Theory of Gases in Shear Flows: Nonlinear Transport by Vicente Garzó
English | PDF | 2003 | 353 Pages | ISBN : 9048163471 | 31.1 MB

The kinetic theory of gases as we know it dates to the paper of Boltzmann in 1872. The justification and context of this equation has been clarified over the past half century to the extent that it comprises one of the most complete examples of many-body analyses exhibiting the contraction from a microscopic to a mesoscopic description.