In‐plane biaxial ratcheting effect and low‐cycle fatigue behavior of CP‐Ti based on DIC method
Author:
Affiliation:
1. School of Mechanical and Power Engineering Nanjing Tech University Nanjing China
2. Jiangsu Key Lab of Design and Manufacture of Extreme Pressure Equipment Nanjing China
Funder
National Natural Science Foundation of China
Publisher
Wiley
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/ffe.13675
Reference39 articles.
1. Low-cycle fatigue behavior of commercially pure titanium
2. Low cycle fatigue behavior of commercial purity titanium in liquid nitrogen
3. Low‐cycle fatigue behavior of commercially pure titanium at room temperature;Zhang QQ;J Plastic Eng,2019
4. Comparisons of low cycle fatigue behavior of CP-Ti under stress and strain-controlled modes in transverse direction
5. The difference in low cycle fatigue behavior of CP-Ti under fully reversed strain and stress controlled modes along rolling direction
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1. In-plane biaxial low-cycle dwell fatigue behavior of CP-Ti based on DIC method;Engineering Fracture Mechanics;2024-10
2. Experimental study on multiaxial ratchetting-fatigue interaction of SUS301L stainless steel tubular welded joint;International Journal of Fatigue;2024-09
3. Development of GDDR method for ratcheting analysis of moderately thick plates;Engineering Analysis with Boundary Elements;2024-05
4. Experimental Study on Multiaxial Ratchetting-Fatigue Interaction of Sus301l Stainless Steel Tubular Welded Joint;2024
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