Author:
Li Binkai,Gong Yu,Xiao Hao,Gao Yukui,Liang Enquan
Abstract
Multibolt composite joints are widely used in aircraft structures. The determination of the pin-load distribution among the bolts is a critical step in the failure prediction of bolted joints. In this paper, a two-dimensional model of the multibolt composite structure is established for the pin-load distribution analysis. Its accuracy is validated by experimental results and the results from a 3D finite element model. Based on the determined pin-load distribution, FE models for a laminated plate with three-row fastener joints are built for failure prediction. Hashin stress criteria and the degradation guidelines of the material stiffness with respect to the different failure modes proposed by Tserpes are applied for the failure evaluation and the material degradation, respectively. The failure location and ultimate load are well predicted, which further validates the effectiveness and applicability of the proposed model for the pin-load distribution analysis.
Funder
Fundamental Research Funds for the Central Universities
Foundation of State Key Laboratory of Automotive Simulation and Control
Natural Science Foundation of Chongqing
Subject
General Materials Science
Cited by
11 articles.
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