An interaction integral retardation model for predicting fatigue life under multi-step loading
Author:
Funder
MSL
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference80 articles.
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2. Quantifying fatigue overload retardation mechanisms by energy dispersive X-ray diffraction;Simpson;J Mech Phys Solids,2019
3. Separating plasticity-induced closure and residual stress contributions to fatigue crack retardation following an overload;Salvati;J Mech Phys Solids,2017
4. In-situ crack propagation measurement of high-strength steels including overload effects;Simunek;Procedia Eng,2018
5. Effect of single initial overload and mean load on the low-cycle fatigue life of normalized 300 M alloy steel;Bassindale;Int J Fatigue,2020
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1. Thickness and weld orientation effects on fatigue crack growth after a single tensile overload;International Journal of Pressure Vessels and Piping;2023-12
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3. In-situ experimental investigation and prediction of fatigue crack growth for aluminum alloys under single spike-overloads;Engineering Fracture Mechanics;2022-02
4. Numerical investigation on the effect of thickness and stress level on fatigue crack growth in notched specimens;Theoretical and Applied Fracture Mechanics;2021-12
5. Fatigue Crack Growth Prediction in a Nickel-Base Superalloy Under Spectrum Loads Using FRANC3D;Transactions of the Indian National Academy of Engineering;2021-10-14
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