Analytical and Experimental Investigation of Self-Loosening of Preloaded Cap Screw Fasteners

Author:

Yang Xianjie1,Nassar Sayed21

Affiliation:

1. Department of Mechanical Engineering, Fastening and Joining Research Institute, Oakland University, Rochester, MI 48309

2. Fellow ASME

Abstract

In an effort to establish a theoretical outline of a criterion for preventing the vibration-induced loosening of preloaded threaded fasteners, this paper provides an experimental and analytical insight into the effect of the initial bolt preload and the excitation amplitude on the self-loosening performance of a cap screw fastener. A nonlinear model is used for predicting the clamp load loss caused by the vibration-induced loosening of cap screw fasteners under cyclic transverse loading. Experimental verification was conducted on the twisting torque variation and the effect of the preload level and transverse displacement amplitude. Comparison of the experimental and analytical results on the clamp load loss with the number of cycles verifies that the proposed model accurately predicts self-loosening performance.

Publisher

ASME International

Subject

General Engineering

Reference14 articles.

1. New Criteria for Self-Loosening of Fasteners Under Vibration;Junker;SAE Trans.

2. How Much Shake Can Bolted Joints Take;Finkelston;Mach. Des.

3. Vibration and Shock Induced Loosening;Hess

4. Investigations of Bolt Loosening Mechanisms, 1st Report: On Bolts of Transversely Loaded Joints;Sakai;Bull. JSME

5. Designing With Threaded Fasteners;Haviland;Mech. Eng. (Am. Soc. Mech. Eng.)

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