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Buckling analysis of tri-layer beams with overlapped delaminations

机译:重叠分层三层梁的屈曲分析

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摘要

An exact solution to the buckling behavior of tri-layer beams with two overlapped delaminations is presented for the first time. In addition, new non-dimensionalized parameters, axial and bending stiffnesses and effective slenderness ratio, are introduced. The characteristic equation governing buckling is derived by using the Euler-Bernoulli beam theory, performing proper linearization and by imposing appropriate equilibrium, kinematical continuity, and boundary conditions. Results of the present method are compared with those of homogeneous beams having single and double equal delaminations reported previously, and showed an excellent agreement. A parametric study has been carried out. The buckling load varies monotonically with the normalized axial stiffness whereas it does not with the normalized bending stiffness, where a transition region is observed. The effect of spanwise delamination location on critical buckling load is discussed for a tri-layer beam of carbon/epoxy, glass/epoxy, and carbon/epoxy. The accurate solution can serve as a benchmark solution for other numerical schemes.
机译:首次提出了具有两个重叠分层的三层梁屈曲特性的精确解决方案。此外,还引入了新的无量纲参数,轴向和弯曲刚度以及有效的细长比。通过使用Euler-Bernoulli梁理论,执行适当的线性化并施加适当的平衡,运动连续性和边界条件,可以得出控制屈曲的特征方程。将本方法的结果与先前报道的具有单次和两次均等分层的均质梁的结果进行比较,并显示出极好的一致性。已经进行了参数研究。屈曲载荷随归一化的轴向刚度单调变化,而随归一化的弯曲刚度而变化,在此观察到过渡区域。对于碳/环氧树脂,玻璃/环氧树脂和碳/环氧树脂的三层梁,讨论了翼展方向分层位置对临界屈曲载荷的影响。准确的解决方案可以用作其他数值方案的基准解决方案。

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