Investigation of the damage and fracture of Ti-6Al-4V titanium alloy under dwell-fatigue loadings
Author:
Funder
FAPESP
Publisher
Elsevier BV
Subject
General Engineering,Energy Engineering and Power Technology
Reference11 articles.
1. Creep-fatigue behavior at high temperature of a UDIMET 720 nickel-base superalloy;Billot;International Journal of Fatigue,2010
2. On cold dwell facet fatigue in titanium alloy aero-engine components;Cuddihy;International Journal of Fatigue,2017
3. The influence of load holds on the fatigue behaviour of drawn Ti-6Al-4V wires;Everaerts;International Journal of Fatigue,2017
4. AISI 4140 Steel Fatigue Performance: Cd Replacement by Electroplated Zn-Ni Alloy Coating;Fernandes;Journal of Materials Engineering and Performance,2020
5. Microstructure and fatigue crack growth mechanisms in high temperature titanium alloys;Ghonem;International Journal of Fatigue,2010
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1. Room-Temperature Creep Deformation of a Pressure-Resistant Cylindrical Structure Made of Dissimilar Titanium Alloys;Journal of Marine Science and Engineering;2024-08-17
2. Data-driven machine learning approach for predicting dwell fatigue life in two classes of Titanium alloys;Engineering Fracture Mechanics;2024-08
3. Numerical analysis on the creep-fatigue damage of titanium alloy deep-sea pressure hull at room temperature;Marine Structures;2024-07
4. Low-cycle and dwell fatigue properties for a near alpha titanium alloy Ti–6Al–3Nb–2Zr–1Mo;Journal of Materials Research and Technology;2024-03
5. Evolution on the Microstructure and Mechanical Properties of a New Multicomponent Near-Alpha Titanium Alloy after Rolling and Heat Treatments;Metals;2023-07-04
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