Redemption of the formalism of segmented linearity: multiscaling of non-equilibrium and non-homogeneity applied to fatigue crack growth

Author:

Sih G. C.1

Affiliation:

1. International Center for Sustainability, Accountability and Eco-Affordability of the Large and Small (ICSAELS); Lehigh University; Bethlehem PA 18015 USA

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference20 articles.

1. Scalability and homogenization of transitional functions: effects of non-equilibrium and non-homogeneity;Sih;Theor. Appl. Fract. Mec.,2014

2. Fatigue-creep crack growth characteristics of α + β titaniumalloys: transition of data in segments of macro-micro-nano;Sih;Int. J. Terraspace Sci. Eng.,2014

3. From monoscale to multiscale modeling of fatigue crack growth: stress and energy density factor;Sih;Sci. China-Phys. Mech. Astron.,2014

4. Multiscale approach to micro/macro fatigue crack growth in 2024-T3 aluminum panel;Sih;Sci. China-Phys. Mech. Astron.,2014

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1. Micro/Nanocrack Propagation and Fatigue Strength Analysis of Gun Barrel;Journal of Failure Analysis and Prevention;2020-05-25

2. Creep behavior of V-notched components;Frattura ed Integrità Strutturale;2017-06-28

3. Multi-scale fatigue crack propagation in 304 stainless steel: experiments and modelling;Fatigue & Fracture of Engineering Materials & Structures;2017-03-29

4. Non-localized creep assessment of V-notched components: a review;Procedia Structural Integrity;2017

5. The role of notch tip shape and radius on deformation mechanisms of 12Cr1MoV steel under impact loading. Part 1. Energy parameters of fracture;Fatigue & Fracture of Engineering Materials & Structures;2016-10-05

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