Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis

Dynamic modeling of the joint interface is critical to the performance analysis of bolt-jointed structures. In this work, an equivalent modeling method was presented for modeling the relative rotation of the joint interface in bolt-jointed beam structures. As the transverse vibration of the studied...

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Main Authors: Guowei Zhang, Fushou Liu
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Machines
Subjects:
Online Access:https://www.mdpi.com/2075-1702/11/3/342
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author Guowei Zhang
Fushou Liu
author_facet Guowei Zhang
Fushou Liu
author_sort Guowei Zhang
collection DOAJ
description Dynamic modeling of the joint interface is critical to the performance analysis of bolt-jointed structures. In this work, an equivalent modeling method was presented for modeling the relative rotation of the joint interface in bolt-jointed beam structures. As the transverse vibration of the studied structure is closely related to the rotation of the joint, which is different from previous studies that focused on the tangential slip of the joint interface, the Valanis model is used to model the relative rotation of the joint. In addition, the shear deformation and rotational inertia of the beam were considered in the modeling, using a finite element method that employed Timoshenko beam elements. The parameters of the Valanis model were determined by fitting a series of hysteresis loops obtained from the transient nonlinear analysis of a 3D FEM model. The results show that the proposed equivalent modeling method can accurately simulate the dynamic response and dissipation of the jointed beam structure with a significantly high computational efficiency. The maximum errors of the dynamic response amplitude and the energy dissipation are 5.5% and 8.3%.
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spelling doaj.art-5cb505ad6551425b9db0676fe552eb592023-11-17T12:15:10ZengMDPI AGMachines2075-17022023-03-0111334210.3390/machines11030342Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of HysteresisGuowei Zhang0Fushou Liu1College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, ChinaCollege of Civil Engineering, Nanjing Forestry University, Nanjing 210037, ChinaDynamic modeling of the joint interface is critical to the performance analysis of bolt-jointed structures. In this work, an equivalent modeling method was presented for modeling the relative rotation of the joint interface in bolt-jointed beam structures. As the transverse vibration of the studied structure is closely related to the rotation of the joint, which is different from previous studies that focused on the tangential slip of the joint interface, the Valanis model is used to model the relative rotation of the joint. In addition, the shear deformation and rotational inertia of the beam were considered in the modeling, using a finite element method that employed Timoshenko beam elements. The parameters of the Valanis model were determined by fitting a series of hysteresis loops obtained from the transient nonlinear analysis of a 3D FEM model. The results show that the proposed equivalent modeling method can accurately simulate the dynamic response and dissipation of the jointed beam structure with a significantly high computational efficiency. The maximum errors of the dynamic response amplitude and the energy dissipation are 5.5% and 8.3%.https://www.mdpi.com/2075-1702/11/3/342frictional contact interfacehysteresis loopbolted jointValanis hysteresis model
spellingShingle Guowei Zhang
Fushou Liu
Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
Machines
frictional contact interface
hysteresis loop
bolted joint
Valanis hysteresis model
title Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
title_full Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
title_fullStr Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
title_full_unstemmed Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
title_short Equivalent Dynamic Modeling for the Relative Rotation of Bolted Joint Interface Using Valanis Model of Hysteresis
title_sort equivalent dynamic modeling for the relative rotation of bolted joint interface using valanis model of hysteresis
topic frictional contact interface
hysteresis loop
bolted joint
Valanis hysteresis model
url https://www.mdpi.com/2075-1702/11/3/342
work_keys_str_mv AT guoweizhang equivalentdynamicmodelingfortherelativerotationofboltedjointinterfaceusingvalanismodelofhysteresis
AT fushouliu equivalentdynamicmodelingfortherelativerotationofboltedjointinterfaceusingvalanismodelofhysteresis