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Preload Effects on Failure Mechanisms of Hybrid Metal-Composite Bolted Joints

机译:预载对混合金属复合螺栓连接接头失效机理的影响

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This paper presents the effects of torque preload on the damage initiation and growth in the CFRP (Carbon Fiber Reinforced Polymer) composite laminated adherent of the single-lap, single-bolt, hybrid metal-composite joints. A detailed 3D finite element model incorporating geometric, material and friction-based contact full nonlinearities is developed to numerically investigate the preload effects on the progressive damage analysis (PDA) of the orthotropic material model. The PDA material model integrates the nonlinear shear response, Hashin-tape failure criteria and strain-based continuum elastic properties degradation laws being developed using the UMAT user subroutine in Nastran commercial software. In order to validate the preload effects on the failure modes of the joints with hexagonal head bolts, experiments were conducted using the SHM (Structural Health Monitoring) technique. The results showed that the adherent torque level is an important parameter in the design process of an adequate bolted joint and its effects on damage initiation and failure modes were quite accurately predicted by the PDA material model, which proved to be computational efficient and can predict failure propagation and damage mechanism in hybrid metal-composite bolted joints.
机译:本文介绍了扭矩预紧力对单搭接,单螺栓,混合金属复合材料接头的CFRP(碳纤维增强聚合物)复合层压粘合剂的损伤萌生和生长的影响。结合几何,材料和基于摩擦的接触完全非线性的详细3D有限元模型被开发出来,以数值研究正交各向异性材料模型的预载荷对渐进损伤分析(PDA)的影响。 PDA材料模型集成了非线性剪切响应,Hashin-tape破坏准则和基于应变的连续统弹性特性退化定律,这些定律是使用Nastran商业软件中的UMAT用户子例程开发的。为了验证预紧力对六角头螺栓的破坏模式的影响,使用SHM(结构健康监测)技术进行了实验。结果表明,附着扭矩水平是足够的螺栓连接设计过程中的重要参数,并且通过PDA材料模型可以非常准确地预测其对破坏开始和破坏模式的影响,证明了计算效率高并且可以预测破坏混合金属复合螺栓连接的扩散和损伤机理。

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