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Free vibrations of laminated composite beams with multiple edge cracks: Numerical model and experimental validation

机译:具有多个边缘裂缝的层压复合梁的自由振动:数值模型和实验验证

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摘要

Free vibration analysis of laminated composite beams including open transverse cracks is presented by using a shear-deformable thirteen degrees-of-freedom finite element model, which considers extension-twist, bending-twist and bending-extension couplings, and the Poisson's effect. Lagrange's equation is employed to derive the equations of motion. Trial functions are selected as cubic Lagrange polynomials for deflections while quadratic for the others in derivation of element mass and stiffness matrices. Damage is introduced into the beam by reducing stiffness of elements within damaged zone. Comparisons are made with the available literature to show the present element's accuracy. Experimental validation is also performed with through ambient vibration tests on a cantilever laminated composite beam under six damage scenarios. According to the results, the methodology presented in this study provides a simple and quick way in a sufficient accuracy to determine the natural frequencies and mode shapes of laminated composite beams with open transverse non-propagating edge cracks.
机译:通过使用剪切可变形的十三自由度有限元模型来提出包括开放横向裂缝的层叠复合梁的自由振动分析,其认为延伸 - 扭曲,弯曲和弯曲延伸联轴器和泊松效果。拉格朗日的等式用于导出运动方程。选择试验函数作为立方拉格朗日多项式,用于偏转,而其他元素质量和刚度矩阵的其他用于其他的偏转。通过减少受损区域内的元素刚度,将损坏引入光束中。使用可用文献进行了比较,以显示目前的元素的准确性。通过在六个损伤场景下通过悬臂式叠层复合梁上的环境振动试验进行了实验验证。根据结果​​,本研究提供的方法提供了一种简单且快速的方式,以足够的精度来确定具有开放横向非传播边缘裂缝的层压复合梁的自然频率和模式形状。

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