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Torsional vibrations of composite bars of variable cross-section by BEM

机译:边界元法的变截面复合材料杆的扭转振动

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In this paper a boundary element method is developed for the nonuniform torsional vibration problem of doubly symmetric composite bars of arbitrary variable cross-section. The composite bar consists of materials in contact, each of which can surround a finite number of inclusions. The materials have different elasticity and shear moduli and are firmly bonded together. The beam is subjected to an arbitrarily distributed dynamic twisting moment, while its edges are restrained by the most general linear torsional boundary conditions. A distributed mass model system is employed which leads to the formulation of three boundary value problems with respect to the variable along the beam angle of twist and to the primary and secondary warping functions. These problems are solved employing a pure BEM approach that is only boundary discretization is used. Both free and forced torsional vibrations are considered and numerical examples are presented to illustrate the method and demonstrate its efficiency and wherever possible its accuracy. The discrepancy in the analysis of a thin-walled cross-section composite beam employing the BEM after calculating the torsion and warping constants adopting the thin tube theory demonstrates the importance of the proposed procedure even in thin-walled beams, since it approximates better the torsion and warping constants and takes also into account the warping of the walls of the cross-section.
机译:针对任意变截面双对称复合材料杆的非均匀扭转振动问题,本文提出了一种边界元方法。复合棒由接触的材料组成,每种材料都可以围绕有限数量的夹杂物。这些材料具有不同的弹性和剪切模量,并且牢固地粘合在一起。梁受到任意分布的动态扭转力矩,而其边缘受到最一般的线性扭转边界条件的约束。使用了分布式质量模型系统,该系统导致了三个沿边值问题的公式化,这些边值问题是沿着扭转光束角的变量以及主要和次要翘曲函数。使用纯BEM方法(仅使用边界离散化)解决了这些问题。考虑了自由扭振和强迫扭振,并通过数值算例说明了该方法,并证明了其效率以及可能的准确性。在采用薄管理论计算扭转和翘曲常数后,采用BEM分析薄壁截面组合梁时的差异证明了所提出程序的重要性,即使在薄壁梁中也是如此,因为它可以更好地近似扭转和翘曲常数,并且还考虑了横截面壁的翘曲。

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