Very-High-Cycle-Fatigue Properties of TC4 Titanium Alloy Under Three-point Bending

被引:0
|
作者
Lu, Kaiju [1 ]
Cheng, Li [1 ,2 ]
Chen, Xuan [1 ]
Chen, Chao [1 ]
Jiao, Shengbo [3 ]
Liu, Jingyuan [1 ]
Bao, Xuechun [1 ]
机构
[1] Air Force Engineering University, Xi'an,710038, China
[2] Co-Innovation Center for Advanced Aero-Engine, Beijing,100191, China
[3] Air Force Aviation University, Changchun,130000, China
关键词
Fatigue testing - Bending tests - Crack initiation - Stress analysis - Titanium alloys - Ultrasonic testing;
D O I
暂无
中图分类号
学科分类号
摘要
Aiming at the very-high-cycle-fatigue (VHCF) of aeroengine compressor blades under complex loading, three-point bending ultrasonic fatigue tests of TC4 titanium alloy under stress ratio R of 0.3 and 0.5 were performed, and failure mechanisms of VHCF under three-point bending was also investigated. Test results show that when the number of cycles exceeds 107 cycles, specimens under the two stress ratios R of 0.3, 0.5 fail and S-N curves present a bilinear characteristic. SEM analysis indicates that the crack initiation sites are transferred from the surface to the sub-surface with the decrease of the maximum stress. Fatigue crack initiations are results of competition between surface slip and internal cleavage fracture. Then a model based on fatigue life was proposed to describe the competition between the two mechanisms, which is in agreement with the experimental results. The temperature of the specimen surface was monitored by an infrared camera. Its change can be divided into four stages in the high-cycle-fatigue (HCF) regime: steady rising, steady decreasing, fast rising and fast decreasing. While it can be divided into three stages in the VHCF regime: steady rising, fast rising and fast decreasing. Finally, the characteristics of heat production and transfer were described, and the correlation between temperature and stress distribution was analyzed. © 2019, Science Press. All right reserved.
引用
收藏
页码:3175 / 3182
相关论文
共 50 条
  • [1] Very-High-Cycle-Fatigue Properties of TC4 Titanium Alloy Under Three-point Bending
    Lu Kaiju
    Cheng Li
    Chen Xuan
    Chen Chao
    Jiao Shengbo
    Liu Jingyuan
    Bao Xuechun
    RARE METAL MATERIALS AND ENGINEERING, 2019, 48 (10) : 3175 - 3182
  • [2] Effect of forging process on high cycle and very high cycle fatigue properties of TC4 titanium alloy under three-point bending
    Wang, Bohan
    Cheng, Li
    Cui, Wenbin
    Chen, Xuan
    Wang, Changkai
    Li, Dongchun
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2021, 44 (08) : 2054 - 2069
  • [3] Study on very high cycle fatigue properties of forged TC4 titanium alloy treated by laser shock peening under three-point bending
    Wang, Bohan
    Cheng, Li
    Li, Dongchun
    INTERNATIONAL JOURNAL OF FATIGUE, 2022, 156
  • [4] Experimental Study on Forged TC4 Titanium Alloy Fatigue Properties under Three-Point Bending and Life Prediction
    Wang, Bohan
    Cheng, Li
    Li, Dongchun
    MATERIALS, 2021, 14 (18)
  • [5] The Effect of Microstructure and Axial Tension on Three-Point Bending Fatigue Behavior of TC4 in High Cycle and Very High Cycle Regimes
    Bao, Xuechun
    Cheng, Li
    Ding, Junliang
    Chen, Xuan
    Lu, Kaiju
    Cui, Wenbin
    MATERIALS, 2020, 13 (01)
  • [6] A study on very high cycle fatigue properties of TC4 titanium alloy under combined loading
    Wang B.
    Cheng L.
    Li D.
    Zhendong yu Chongji/Journal of Vibration and Shock, 2022, 41 (20): : 244 - 251
  • [7] Crack initiation and early growth behavior of TC4 titanium alloy under high cycle fatigue and very high cycle fatigue
    Li, Wei
    Gao, Ning
    Zhao, Hongqiao
    Xing, Xinxin
    JOURNAL OF MATERIALS RESEARCH, 2018, 33 (08) : 935 - 945
  • [8] Crack initiation and early growth behavior of TC4 titanium alloy under high cycle fatigue and very high cycle fatigue
    Wei Li
    Ning Gao
    Hongqiao Zhao
    Xinxin Xing
    Journal of Materials Research, 2018, 33 : 935 - 945
  • [9] A very high cycle fatigue thermal dissipation investigation for titanium alloy TC4
    Huang, Zhi Yong
    Wang, Qing Yuan
    Wagner, Daniele
    Bathias, Claude
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 600 : 153 - 158
  • [10] The Very-High-Cycle Fatigue Properties of Carbon Fiber Composite under Three-Point Bending
    Ouyang, Na
    Chen, Xuan
    Chen, Chao
    Cui, Wenbin
    6TH ANNUAL INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND ENGINEERING, 2020, 1622