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Lateral-torsional buckling of orthotropic rectangular section beams

机译:正交异性矩形截面梁的横向扭转屈曲

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The elastic lateral-torsional buckling of rectangular section beams made of wood under various loading conditions are investigated in this paper. Three dimensional finite element models considering the orthotropic behavior of wood are utilized to predict the elastic buckling load. The effects of depth/width ratios of the cross section, wood species, and cross grain of the beams on the predicted buckling loads are investigated. For all the cases considered, the critical loads predicted using finite element models assuming wood as orthotropic material are much smaller than those predicted assuming wood as isotropic material. The predicted critical loads of beams with cross grain of 45° are approximately a third of the predicted critical loads of beams without any cross grain. The finite element results agree very well with the beam tests on several species of the hardwood category.
机译:本文研究了木质矩形截面梁在不同载荷条件下的弹性横向扭转屈曲。考虑木材正交各向异性行为的三维有限元模型被用来预测弹性屈曲载荷。研究了横梁的横截面,木材种类和横纹的纵横比对预测的屈曲载荷的影响。对于所有考虑的情况,使用有限元模型(假定木材为正交异性材料)预测的临界载荷要比假定使用木材为各向同性材料时预测的临界载荷小得多。横纹为45°的横梁的预计临界载荷约为无横纹的横梁的预计临界载荷的三分之一。有限元结果与对几种硬木类别的光束测试非常吻合。

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