4.6 Article

A Three-Dimensional Transition Interface Model for Bolt Joint

Journal

MACHINES
Volume 10, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/machines10070511

Keywords

bolt joint; transition interface model; contact characteristic; dynamic model; parameter identification

Funding

  1. National Natural Science Foundation of China [52105135]
  2. Natural Science Foundation of Hubei Province [2020CFB174]
  3. Fundamental Research Funds for the Central Universities, South-Central University for Nationalities [CZY20027]

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In this study, a three-dimensional transition interface model with geometric and physical parameters is proposed to simulate bolt connections. A parameter database is constructed for machine tool bolt joints. The physical parameters and thickness of the model are identified using a model updating method. The practicality of the model and the usage of the parameter database are validated using an engineering example.
Bolt connection is an important component in mechanical structure which significantly affects the dynamic property of the whole structure. In this paper, a three-dimensional transition interface model which contains geometric and physical parameters is proposed to model the bolted joint based on the contact analysis. The geometric parameters and the physical parameters are used to characterize the influence of contact area and contact pressure which are related to connection parameters such as material, roughness, connection thickness, and tightening force, respectively. After that, the geometric parameter identification method is proposed, and the geometric parameter database of bolt joints for machine tools is constructed based on the Kriging interpolation method. Then, the model updating method based on the combination of modal parameters and frequency response function is proposed to identify the physical parameters and thickness of the three-dimensional transition interface model. The database of the transition interface model is constructed after verifying the validity of the proposed model. Finally, an engineering example of an engraving machine tool is used to check the practicability of the proposed transition interface model and the usage of the constructed parameter database.

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