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Computational homogenization of periodic beam-like structures

机译:周期性梁状结构的计算均质化

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摘要

This paper is concerned with the computation of the effective elastic properties of periodic beam-like structures. The homogenization theory is used and leads to an equivalent anisotropic Navier-Bernoulli-Saint-Venant beam. The overall behavior is obtained from the solution of basic cell problems posed on the three-dimensional period of the structure and solved using three-dimensional finite element implementation. This procedure is first applied to two corrugated zigzag and sinus beams subjected to in-plane loading. Next, the axial elastic properties of a stranded '6 + 1' wire-cable are computed. The effective properties values obtained appear to be very close to analytical reference results showing the efficiency of the approach. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文涉及周期性梁状结构的有效弹性性能的计算。使用了均质化理论,并导致了等效的Navier-Bernoulli-Saint-Venant各向异性光束。整体行为是从解决三维结构周期中存在的基本单元问题获得的,并使用三维有限元实现来解决。此过程首先应用于承受平面内载荷的两个波纹锯齿形和窦形梁。接下来,计算出绞合的“ 6 +1”电缆的轴向弹性。获得的有效特性值似乎非常接近分析参考结果,表明该方法的有效性。 (c)2005 Elsevier Ltd.保留所有权利。

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