Research on composite material riveting simulation method for engineering applications
International Journal of Structural Integrity
ISSN: 1757-9864
Article publication date: 10 September 2024
Issue publication date: 30 September 2024
Abstract
Purpose
In order to improve the efficiency and reliability of simulation analysis for composite riveting structures in engineering products, a comparative study was conducted on different forms of riveting simulation methods.
Design/methodology/approach
Five different rivent simulation models were established using the finite element method, including rigid element CE, flexible element Rbe3 and beam element, and their results were future compared and analyzed.
Findings
Under the given technical parameters, the simulation method of Rbe3 (with holes) + beam can meet the analysis requirements of complex engineering products in terms of the rationality of rivet load distribution, calculation error and relatively efficient modeling.
Originality/value
This study proposes a simulation method for the riveting structure of carbon fiber composite materials for engineering applications. This method can satisfy the simulation analysis requirements of transportation vehicles in terms of modeling time, computational efficiency and accuracy. The research can provide technical support for the riveting process and mechanical analysis between carbon fiber composite components in transportation products.
Keywords
Acknowledgements
This work was supported by the Key Laboratory of Environment Controlled Aquaculture (Dalian Ocean University) Ministry of Education (No. 2024), the Ph.D. Start-up Fund of Dalian Ocean University (No. XL20220006) and the Scientific Research Project in School-level of Dalian Ocean University (No. 2021).
Citation
Niu, C., Liu, B., Bai, C., Guo, L., Chen, L. and Tang, J. (2024), "Research on composite material riveting simulation method for engineering applications", International Journal of Structural Integrity, Vol. 15 No. 5, pp. 836-850. https://doi.org/10.1108/IJSI-06-2024-0091
Publisher
:Emerald Publishing Limited
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