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A Simplified Solution of the Torsional Rigidity of the Composite Beams by Using FEM

机译:有限元法简化组合梁的扭转刚度

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摘要

In this paper, the torsional rigidity of the composite sections formed by different materials is obtained by using a finite element procedure. In the derivation of the differential equation, the Saint-Venant's stress function was used. The obtained partial differential equation was discretized by finite elements to get the potentials in the nodal points. After the calculations of the unknown potentials on the composite cross-section, the torsional rigidity is calculated by integrating the potentials on the solution domain. To test the validity of the proposed algorithm, the available analytical and numerical results from the previous studies were studied. It was seen that this new algorithm is efficient and simpler than the previous ones.
机译:在本文中,通过有限元程序获得了由不同材料形成的复合材料截面的抗扭刚度。在微分方程的推导中,使用了Saint-Venant的应力函数。用有限元离散化所获得的偏微分方程,以得到节点处的电势。在计算了复合截面上的未知电势之后,通过积分求解域上的电势来计算扭转刚度。为了验证所提算法的有效性,研究了先前研究的可用分析和数值结果。可以看出,这种新算法比以前的算法高效且简单。

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