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Axiomatic/asymptotic PVD/RMVT-based shell theories for free vibrations of anisotropic shells using an advanced Ritz formulation and accurate curvature descriptions

机译:基于公理/渐近PVD / RMVT的壳理论,使用先进的Ritz公式和精确的曲率描述来实现各向异性壳的自由振动

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The Hierarchical Trigonometric Ritz Formulation (HTRF) has earlier been successfully developed for plates[1-4] and shells[5] using the Principle of Virtual Displacements (PVD). In this paper the HTRF is significantly extended with the help of Reissner's Mixed Variational Theorem (RMVT) so as to deal with the free vibrations of doubly-curved anisotropic laminated composite shells. The interlaminar equilibrium of the transverse normal and shear stresses is fulfilled a priori by exploiting the use of Lagrange multipliers. The transverse normal and shear stresses thus become primary variables within the formulation and are always modeled with a Layer-Wise kinematics description. Equivalent Single Layer, Zig-Zag and Layer-Wise approaches are instead efficiently used for the displacement primary variables. Appropriate expansion orders for each displacement or stress unknown are selected depending on the required accuracy and the computational cost. Axiomatic/asymptotic shell theories are then developed by virtue of a deep study on the effectiveness of each term both in the displacements and in the transverse stresses fields. Next exact and/or accurately approximated curvature descriptions are taken into account. Cylindrical, spherical and hyperbolic paraboloidal shells are investigated. The proposed advanced quasi-3D shell models are assessed by comparison with 3D elasticity solutions.
机译:分层三角Ritz公式(HTRF)早先已根据虚拟位移原理(PVD)成功开发用于板[1-4]和壳[5]。本文在Reissner的混合变分定理(RMVT)的帮助下显着扩展了HTRF,以处理双曲各向异性叠层复合材料壳的自由振动。通过利用拉格朗日乘数来先验地满足横向法向应力和剪应力的层间平衡。因此,横向法向应力和剪应力成为配方中的主要变量,并且始终使用Layer-Wise运动学描述进行建模。等效的单层方法,之字形方法和明智的方法被有效地用于位移主变量。根据所需的精度和计算成本,为每个未知的位移或应力选择适当的扩展顺序。然后,通过对位移和横向应力场中每个项的有效性进行深入研究,发展出公理/渐近壳理论。接下来考虑精确和/或精确近似的曲率描述。研究了圆柱形,球形和双曲线抛物面壳。通过与3D弹性解决方案进行比较,评估了拟议的高级准3D壳模型。

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