Predicting Tensile Behavior and Fatigue Life of Laser Shock Peened Titanium Alloy by Crystal Plasticity Model

Author:

Hu Wenxuan,Yi Min

Publisher

Elsevier BV

Reference61 articles.

1. High-strength titanium alloys for aerospace engineering applications: A review on melting-forging process;Q Zhao;Materials Science and Engineering: A,2022

2. Microplasticity behavior study of equiaxed near-b titanium alloy under high-cycle fatigue loading: Crystal plasticity simulations and experiments;B Tang;Journal of Materials Research and Technology,2019

3. Effects of microstructure on high cycle fatigue properties of dual-phase Ti alloy: combined nonlocal CPFE simulations and extreme value statistics;M Zhang;Journal of Materials Research and Technology,2020

4. Crystal plasticity FE study of the effect of thermo-mechanical loading on fatigue crack nucleation in titanium alloys;D Ozturk;Fatigue & Fracture of Engineering Materials & Structures,2016

5. Crystal plasticity analysis of temperature-sensitive dwell fatigue in Ti-6Al-4V titanium alloy for an aero-engine fan disc;L Yin;International Journal of Fatigue,2022

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