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Variable stiffness composite beams subject to non-uniformly distributed loads: An analytical solution

机译:经受非均匀分布载荷的可变刚度复合梁:分析溶液

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An analytical solution is obtained for the 3D static deflection of variable stiffness composite beams subject to non-uniformly distributed loads. Governing differential equations with variable coefficients, reflecting the spatially variable stiffness properties, are presented in which four degrees of freedom are fully coupled. The general analytical solution in integral form is derived and closed-form expressions obtained using series expansion approximations. The static deflection of a number of variable stiffness composite beams that can be made by fibre steering are considered with various stacking sequences. The results obtained from the proposed method are validated against numerical results from the Chebyshev collocation method and excellent agreement is observed between the two. While the proposed methodology is applicable for variable stiffness composite beams with arbitrary span-wise variation of properties, it is also an efficient approach for capturing the complicated 3D static deflection of variable stiffness composite beams subject to non-uniformly distributed loads.
机译:获得经受不均匀分布负载的可变刚度复合梁的3D静态偏转的分析解决方案。提出了反映空间可变刚度特性的可变系数的微分方程,其中包括四个自由度完全耦合。通过串联膨胀近似获得的整体形式中的一般分析溶液和闭合形式的表达式。通过各种堆叠序列考虑可以通过光纤转向制造的多个可变刚度复合梁的静偏转。从所提出的方法获得的结果是针对Chebyshev裂缝方法的数值结果验证,两者之间观察到了优异的协议。虽然所提出的方法适用于具有任意跨度的性能变化的可变刚度复合梁,但是对于捕获经受不均匀分布负载的可变刚度复合梁的复杂3D静态偏转也是一种有效的方法。

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