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Three-dimensional free vibration analysis of cylindrical shells with continuous grading reinforcement

机译:连续梯度配筋圆柱壳的三维自由振动分析

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摘要

Three dimensional free vibrations analysis of functionally graded fiber reinforced cylindrical shell is presented, using differential quadrature method (DQM). The cylindrical shell is assumed to have continuous grading of fiber volume fraction in the radial direction. Suitable displacement functions are used to reduce the equilibrium equations to a set of coupled ordinary differential equations with variable coefficients, which can be solved by differential quadrature method to obtain natural frequencies. The main contribution of this work is presenting useful results for continuous grading of fiber reinforcement in the thickness direction of a cylindrical shell and comparison with similar discrete laminate composite ones. Results indicate that significant improvement is found in natural frequency of a functionally graded fiber reinforced cylinder due to the reduction in spatial mismatch of material properties and natural frequency.
机译:利用微分求积法(DQM),对功能梯度纤维增强圆柱壳进行了三维自由振动分析。假定圆柱壳在径向上具有连续的纤维体积分数渐变。使用合适的位移函数将平衡方程简化为一组变系数的耦合常微分方程,可以通过微分求积法求解以获得固有频率。这项工作的主要贡献是为纤维增强材料在圆柱形外壳的厚度方向上连续分级提供了有用的结果,并与类似的离散层压复合材料进行了比较。结果表明,由于材料性能和固有频率的空间不匹配的减少,功能梯度纤维增强圆柱的固有频率得到了显着改善。

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