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Three-dimensional hybrid-mixed stress elements for free vibration analysis

机译:自由振动分析的三维混合应力元

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Hexahedral hybrid-mixed finite elements are proposed for free vibration analysis of three-dimensional solids. The element formulation relies on the simultaneous and independent approximations of stress and displacement in the element domain as well as the displacement on their boundary. Sets of complete and linearly independent non-nodal Legendre polynomials used for the field variables lead to symmetric, highly sparse and well conditioned solving systems. Numerical tests show that the elements yield accurate results, even in the presence of high stress gradients, and they seem to be free of shear and volumetric locking and have low sensitivity to mesh distortion. The hierarchical p-refinement strategy is exploited.
机译:提出了六面体混合混合有限元用于三维固体自由振动分析。单元公式依赖于单元域中应力和位移的同时且独立的近似值以及其边界上的位移。用于场变量的一组完整且线性独立的非节点勒让德多项式的集合导致对称,高度稀疏和条件良好的求解系统。数值测试表明,即使在存在高应力梯度的情况下,这些单元也能获得准确的结果,并且似乎没有剪切和体积锁定,并且对网格变形的敏感性较低。利用了分层的p细化策略。

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