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Three dimensional vibration analyses using an eight-node hexahedral element with continuous nodal stress

机译:使用具有连续节点应力的八节点六面体单元进行三维振动分析

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The recently published hybrid "FE-Meshfree" eight-node hexahedral element with continuous nodal stress (Hexa8-CNS) is extended to free and forced vibration analyses of three dimensional solids. As a partition-of-unity (PU) based method, Hexa8-CNS element is capable of constructing high order global displacement approximation function without adding extra nodes or DOFs, by simply using the same mesh as the classical eight-node isoparametric hexahedral (Hexa8) element. In this paper, a series of free vibration and forced vibration problems are solved and results obtained through the Hexa8-CNS element are compared with those obtained through the Hexa8 element. Numerical results show that performance of the Hexa8-CNS element is much better than that of Hexa8 element for both regular and distorted meshes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:最近发布的具有连续节点应力的混合“ FE-Meshfree”八节点六面体单元(Hexa8-CNS)扩展到三维固体的自由振动和强迫振动分析。作为基于单元划分(PU)的方法,Hexa8-CNS元素能够通过简单地使用与经典八节点等参六面体(Hexa8)相同的网格来构造高阶全局位移逼近函数,而无需添加额外的节点或自由度。 )元素。本文解决了一系列自由振动和强迫振动问题,并将通过Hexa8-CNS元件获得的结果与通过Hexa8元件获得的结果进行了比较。数值结果表明,对于规则网格和变形网格,Hexa8-CNS元素的性能都比Hexa8元素好得多。 (C)2018 Elsevier Ltd.保留所有权利。

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