Slip Limit Prediction of High-Strength Bolt Joints Based on Local Approach
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32807
Slip Limit Prediction of High-Strength Bolt Joints Based on Local Approach

Authors: Chang He, Hiroshi Tamura, Hiroshi Katsuchi, Jiaqi Wang

Abstract:

In this study, the aim is to infer the slip limit (static friction limit) of contact interfaces in bolt friction joints by analyzing other bolt friction joints with the same contact surface but in a different shape. By using the Weibull distribution to deal with microelements on the contact surface statistically, the slip limit of a certain type of bolt joint was predicted from other types of bolt joint with the same contact surface. As a result, this research succeeded in predicting the slip limit of bolt joins with different numbers of contact surfaces and with different numbers of bolt rows.

Keywords: Bolt joints, slip coefficient, finite element method, Weibull distribution.

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 230

References:


[1] Y. Tamba, S. Yukito, S. Kimura, T. Yamaguchi, K. Sugiura, “Slip coefficient for high-strength bolted frictional joints with roughened steel surface and inorganic Zinc-rich painted surface, Journal of JSCE, A1, Vol. 3, 2015, pp. 19–32.
[2] K. Minami, H. Tamura, N. Yoshioka, D. Uchida, M. Moro, K. Ando, A study on initial bolt pretensions of high strength bolted joints considering number of contact surfaces. Journal of JSCE, A1, Vol. 75, No.1, 2019, pp. 46–57. (in Japanese)
[3] S. Tsujioka, W. Kozo, Strength of M20, F10T High-Strength Multibolted Friction-Type Joints, Journal of Structural Engineering. B, Vol.40, 1994, pp. 495–500. (in Japanese)
[4] F. Minami, Fracture assessment method using the Weibull stress- Part Ⅰ, Journal of the Japan Welding Society, Vol.75, No.5, 2005, pp. 416–446. (in Japanese)
[5] C. He, H. Tamura, H. Yamada, H. Katsuchi, Analytical simple estimation of slip coefficient of high strength bolt joints, Journal of constructional steel, Vol.28, 2020.11, pp. 146-157. (in Japanese)