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An analytical model for the prediction of through-thickness stiffness in tension-loaded composite bolted joints

机译:拉伸复合螺栓连接节点全厚度刚度预测的解析模型

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This paper presents the development of an analytical model for replicating the through-thickness stiffness of single-bolt, single-lap composite joints subjected to secondary bending. The model is an extension of a spring-based method, where bolts and laminates are represented by a series of springs and masses. The model accounts for extension of the bolt, the stiffness of the clamped region of the joint due to bolt torque, as well as the flexural stiffness and anticlastic curvature within the laminates. In order capture bolt extension and the stiffness of the clamped region, a closed form approach is used. An approximation approach is used to model flexural stiffness and anticlastic curvature within the laminates. The method is validated against detailed three-dimensional finite element models of bolted composite plates and good agreement was obtained. The method is subsequently employed to calibrate the through-thickness stiffness of single-bolt, single-lap joints in highly-efficient numerical models.
机译:本文提出了一种分析模型的开发,该模型用于复制经受二次弯曲的单螺栓,单搭接复合节点的全厚度刚度。该模型是基于弹簧的方法的扩展,其中螺栓和层压板由一系列弹簧和质量表示。该模型考虑了螺栓的延伸,由于螺栓扭矩而导致的接头夹紧区域的刚度,以及层压板中的弯曲刚度和抗弹性曲率。为了捕获螺栓延伸和夹紧区域的刚度,使用了封闭形式。近似方法用于对层压板内的弯曲刚度和抗弹性曲率建模。通过详细的螺栓复合板三维有限元模型对该方法进行了验证,取得了良好的一致性。该方法随后用于在高效数值模型中校准单螺栓,单搭接接头的全厚度刚度。

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