Preload loss of high-strength bolts in friction connections considering corrosion damage and fatigue loading

被引:21
|
作者
Jiang, Chao [1 ]
Xiong, Wen [1 ]
Cai, C. S. [1 ,2 ]
Zhu, Yichen [1 ]
Wang, Jia [1 ]
机构
[1] Southeast Univ, Sch Transportat, Dept Bridge Engn, Nanjing 211189, Peoples R China
[2] Louisiana State Univ, Dept Civil & Environm Engn, Baton Rouge, LA 70803 USA
基金
美国国家科学基金会;
关键词
High-strength bolt; Preload loss; Fatigue; Corrosion; Double lap connection; CLAMPING FORCE; BEHAVIOR; RELAXATION; JOINTS; LIFE;
D O I
10.1016/j.engfailanal.2022.106416
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The preload loss of high-strength bolts in friction connections was investigated considering the corrosion damage and fatigue loading. Double lap connections were assembled and the ultrasonic measurement method was employed to obtain the real-time preload of the bolts. Accelerated corrosion tests of specimens were used to achieve four corrosion levels and the and the corresponding weight loss ratio of the specimens varied from 0 to 10.1%. Fatigue test was then performed on eight corroded connections. The preload change of bolts after installation, corrosion tests, and certain number of load cycles was measured. It is found that the corrosion effects on the bolt preload loss was significant, and an average value of 41.2% preload loss was observed for specimens of 10% weight loss. The influence of fatigue load on the preload loss after unloading could be ignored, but the combination of tensile loading, fatigue loading, and corrosion damage could lead to an up to 11% preload loss.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] The influence of high-strength bolt preload loss on structural mechanical properties
    Kong, Qingzhao
    Li, Yang
    Wang, Shuyin
    Yuan, Cheng
    Sang, Xiaohan
    ENGINEERING STRUCTURES, 2022, 271
  • [22] Corrosion effects on fatigue behavior of dissimilar friction stir welding of high-strength aluminum alloys
    Rodriguez, R. I.
    Jordon, J. B.
    Allison, P. G.
    Rushing, T. W.
    Garcia, L.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 742 : 255 - 268
  • [23] Fatigue life evaluation model for high-strength steel wire considering different levels of corrosion
    Bai, Nani
    Li, Hui
    Ma, Junming
    Lan, Chengming
    Spencer, Billie F., Jr.
    STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2023, 19 (03) : 409 - 419
  • [24] HIGH-STRENGTH FRICTION GRIP BOLTS - OPTIMAL PARAMETERS FOR THE COMBINED METHOD OF TIGHTENING
    DUBOIS, G
    PIRAPREZ, E
    JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 1994, 28 (01) : 1 - 22
  • [25] HIGH-STRENGTH RC CONNECTIONS SUBJECTED TO INELASTIC CYCLIC LOADING
    ALAMEDDINE, F
    EHSANI, MR
    JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 1991, 117 (03): : 829 - 850
  • [26] CORROSION FATIGUE OF TYPE 4140 HIGH-STRENGTH STEEL
    LEE, HH
    UHLIG, HH
    METALLURGICAL TRANSACTIONS, 1972, 3 (11): : 2949 - &
  • [27] Corrosion fatigue of high-strength aircraft structural alloys
    Quispitupa, Amilcar
    Shafiq, Basir
    Suarez, O. Marcelo
    Uwakweh, Oswald
    Duque, Nairobi B.
    JOURNAL OF AIRCRAFT, 2006, 43 (03): : 787 - 792
  • [28] Fatigue Behavior of M20 Torque Shear High-Strength Bolts under Constant-Amplitude Loading
    Zhang, Liang
    Lei, Honggang
    Shen, Yu
    Zhang, Shujia
    Zhou, Zichun
    BUILDINGS, 2023, 13 (02)
  • [29] THE NOTCH EFFECT ON CORROSION-FATIGUE STRENGTH OF HIGH-STRENGTH STEELS
    OKADA, T
    HATTORI, S
    YAMAGISHI, S
    BULLETIN OF THE JSME-JAPAN SOCIETY OF MECHANICAL ENGINEERS, 1986, 29 (255): : 2765 - 2770
  • [30] Advanced performance assessment methods for high-strength bolts in ring-flange connections
    Schaumann, Peter
    Eichstaedt, Rasmus
    Stang, Andre
    STAHLBAU, 2018, 87 (05) : 446 - 455