首页> 外文期刊>Journal of mechanics of materials and structures >HOMOGENIZATION OF A VIERENDEEL GIRDER WITH ELASTIC JOINTS INTO AN EQUIVALENT POLAR BEAM
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HOMOGENIZATION OF A VIERENDEEL GIRDER WITH ELASTIC JOINTS INTO AN EQUIVALENT POLAR BEAM

机译:带有弹性接头的维也纳梁的均质化为等效的极性梁

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In this paper, a homogenization procedure of a Vierendeel girder with elastic joints is shown. The method is based on the Stephen transfer matrix analysis and employs (as a substitute continuum) a polar Timoshenko beam. The polar character of the equivalent beam arises quite naturally from the analysis of the pure bending eigenvector components of the girder force transfer matrix. Through the girder unit cell, two bending moments are transmitted: one is generated by the couple of axial forces acting on each nodal section of the beam, and the other is produced by the moments applied at the nodes of every section by the adjacent cells and is modeled as the resultant of the micropolar moments. Transfer force eigenvector analysis reveals that the unit cell bends while maintaining undeformed webs, a property that allows the evaluation of both the bending stiffnesses and the equivalent material micropolar scale parameter by means of straightforward equations.
机译:在本文中,示出了具有弹性接头的Vierendeel大梁的均质化过程。该方法基于斯蒂芬传递矩阵分析,并采用(作为替代连续体)极性蒂莫申科光束。通过分析梁力传递矩阵的纯弯曲本征向量分量,可以很自然地产生等效梁的极性。通过弯梁单元,传递了两个弯矩:一个弯矩是由作用在梁的每个节点上的轴向力耦合产生的,另一个是由相邻单元在每个截面的节点处施加的弯矩产生的,而弯矩则由弯矩产生。被建模为微极矩的结果。传递力特征向量分析表明,单元格在保持未变形腹板的同时弯曲,该特性允许通过简单的方程式评估弯曲刚度和等效材料微极尺度参数。

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