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Free vibration analysis of uniform and stepped functionally graded circular cylindrical shells

机译:均匀和阶梯式功能分级圆柱形壳体的自由振动分析

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摘要

A semi analytical method is employed to analyze free vibration characteristics of uniform and stepped functionally graded circular cylindrical shells under complex boundary conditions. The analytical model is established based on multi-segment partitioning strategy and first-order shear deformation theory. The displacement functions are handled by unified Jacobi polynomials and Fourier series. In order to obtain continuous conditions and satisfy complex boundary conditions, the penalty method about spring technique is adopted. The solutions about free vibration behavior of functionally graded circular cylindrical shells were obtained by approach of Rayleigh-Ritz. To confirm the dependability and validity of present approach, numerical verifications and convergence studies are conducted on functionally graded cylindrical shells under various influencing factors such as boundaries, spring parameters et al. The present method apparently has rapid convergence ability and excellent stability, and the results of the paper are closely agreed with those obtained by FEM and published literatures.
机译:采用半分析方法来分析复杂边界条件下均匀和阶梯式功能渐进圆柱形壳体的自由振动特性。基于多段分区策略和一阶剪切变形理论建立了分析模型。位移功能由统一的雅各比多项式和傅立叶系列处理。为了获得连续的条件和满足复杂的边界条件,采用了关于弹簧技术的罚化方法。通过Rayleigh -Ritz的方法获得了关于功能梯度圆柱形壳体的自由振动行为的解决方案。为了确认当前方法的可靠性和有效性,在各种影响因素(如边界)下,在功能渐变的圆柱形壳中进行数值验证和收敛研究,弹簧参数等。本方法显然具有快速的收敛能力和优异的稳定性,以及本文的结果与由FEM和公开文献获得的那些。

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