Effect of microstructure on ultra-high cycle fatigue behavior of Ti–6Al–4V
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference24 articles.
1. Progress in structural materials for aerospace systems11The Golden Jubilee Issue—Selected topics in Materials Science and Engineering: Past, Present and Future, edited by S. Suresh.
2. Fatigue and fatigue crack growth of aluminium alloys at very high numbers of cycles
3. Mechanisms of high-strength structural materials fatigue failure in ultra-wide life region
4. Ultrasonic fatigue tests on bearing steel AISI-SAE 52100 at frequency of 20 and 30 kHz
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1. On the role of nanocrystallization and cavitation to early damage of VHCF in selective laser melting Ti-6Al-4 V alloy;International Journal of Fatigue;2024-11
2. A continuous testing method for fatigue strength evaluation in high cycle and very high cycle regimes;International Journal of Fatigue;2024-11
3. Effects of solution aging treatments on microstructure features, tensile properties and low-cycle fatigue behavior of Ti-6.2Al-4.26Mo-1.33Mn alloy;Materials Science and Engineering: A;2024-10
4. Fatigue cracking behavior and life assessment of TC11 titanium alloy in very high cycle regime at two working temperatures;Engineering Failure Analysis;2024-08
5. Microstructure-based interior cracking behavior of α + β titanium alloy under two stress ratios and intermediate temperature in the very high-cycle fatigue regime;Journal of Materials Science;2024-06-28
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