Finite element analysis of catastrophic failure of dynamically-loaded countersunk composite fuselage joints

被引:11
|
作者
Egan, B. [1 ]
McCarthy, M. A. [1 ]
Frizzell, R. M. [2 ]
McCarthy, C. T. [1 ]
机构
[1] Univ Limerick, Dept Mech Aeronaut & Biomed Engn, MSSI, Irish Ctr Composites Res IComp, Limerick, Ireland
[2] Alcatel Lucent, Efficient Energy Transfer Net Dept, Bell Labs, Dublin 15, Ireland
关键词
Finite element analysis; Bolted joints; Fastener failure; Carbon-epoxy; Titanium fasteners; Explicit dynamics; BOLTED JOINTS; PHENOMENOLOGICAL MODELS; SINGLE-LAP; BEHAVIOR; THICKNESS; MULTIBOLT;
D O I
10.1016/j.compstruct.2015.07.004
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Accurate models of dynamic structural failure are important for crashworthiness studies. To date, catastrophic failure of dynamically-loaded composite bolted joints has been studied using global or stacked shell element models. In this paper, high-fidelity (three-dimensional solid) explicit FE models are used to simulate catastrophic failure of countersunk composite fuselage joints. While current state-of-the-art 3D modelling approaches focus almost exclusively on the prediction of composite damage, this study also investigates the treatment of fastener damage. Fastener fracture is a common catastrophic joint failure mode, particularly in joints designed to initially fail in bearing. A Johnson-Cook material model and cohesive elements were used to predict plasticity, damage and fracture of the titanium (Ti-6Al-4V) fastener. Although a model calibration was required, due to the complex interaction of model parameters, numerical results demonstrate key trends of experiments and provide a starting point for the development of more predictive approaches for simulating fastener failure. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1198 / 1208
页数:11
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