Xu, W.; Zhao, Y.; Chen, X.; Zhong, B.; Yu, H.; He, Y.; Tao, C.
An Ultra-High Frequency Vibration-Based Fatigue Test and Its Comparative Study of a Titanium Alloy in the VHCF Regime. Metals 2020, 10, 1415.
https://doi.org/10.3390/met10111415
AMA Style
Xu W, Zhao Y, Chen X, Zhong B, Yu H, He Y, Tao C.
An Ultra-High Frequency Vibration-Based Fatigue Test and Its Comparative Study of a Titanium Alloy in the VHCF Regime. Metals. 2020; 10(11):1415.
https://doi.org/10.3390/met10111415
Chicago/Turabian Style
Xu, Wei, Yanguang Zhao, Xin Chen, Bin Zhong, Huichen Yu, Yuhuai He, and Chunhu Tao.
2020. "An Ultra-High Frequency Vibration-Based Fatigue Test and Its Comparative Study of a Titanium Alloy in the VHCF Regime" Metals 10, no. 11: 1415.
https://doi.org/10.3390/met10111415
APA Style
Xu, W., Zhao, Y., Chen, X., Zhong, B., Yu, H., He, Y., & Tao, C.
(2020). An Ultra-High Frequency Vibration-Based Fatigue Test and Its Comparative Study of a Titanium Alloy in the VHCF Regime. Metals, 10(11), 1415.
https://doi.org/10.3390/met10111415