Rotating Bending Fatigue Properties of 30CrNi2Mo Steel After Electropulsing-Assisted Ultrasonic Surface Rolling Process
Dan Liu, Yalin Shen(Northwest Institute of Mechanical and Electrical Engineering), Hongsheng Huang(Jiangxi Agricultural University), Changsheng Tan(Wenzhou University), Jie Liu(Shenzhen University), Haonan Fan(Xi’an University)
Cited by 1
Related Papers
Slip transmission behavior across α/β interface and strength prediction with a modified rule of mixtures in TC21 titanium alloy
|Journal of Alloys and Compounds|2017|192
A novel high-strength β-Ti alloy with hierarchical distribution of α-phase: The superior combination of strength and ductility
|Materials & Design|2019|159
Effect of microstructure on high cycle fatigue behavior of Ti–5Al–5Mo–5V–3Cr–1Zr titanium alloy
|International Journal of Fatigue|2016|99
Effect of α-phase morphology on low-cycle fatigue behavior of TC21 alloy
|International Journal of Fatigue|2015|97
Characterization of deformation in primary α phase and crack initiation and propagation of TC21 alloy using in-situ SEM experiments
|Materials Science and Engineering A|2018|90