Dynamic analysis of bolted cantilever beam with finite element method considering thread relation

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Abstract

There are complex nonlinear behaviors and mechanisms in the bolted joint interface. Thus, the bolted joint is crucial to the complex nonlinear dynamic response of the structure. However, in the traditional structural dynamic analysis, the screw connection is usually neglected, which makes it challenging to analyze and study the nonlinear dynamic behavior of bolted structures. Hence, based on the Timoshenko beam theory and finite element method, this paper introduces a model considering thread connection to analyze the dynamic response under different excitation. Eventually, the results indicate that owing to the local nonlinearity of bolts, the whole bolted cantilever beam shows hardening-type characteristics. In addition, the frequency response curve also depicts the typical nonlinear phenomenon of instability and uncertainty, namely bifurcation, which preliminarily verifies the correctness and accuracy of the bolted cantilever beam model.

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Cao, C., Zhao, X., & Song, Z. (2020). Dynamic analysis of bolted cantilever beam with finite element method considering thread relation. Applied Sciences (Switzerland), 10(20), 1–16. https://doi.org/10.3390/app10207036

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