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Interaction between laser-welded web-core sandwich deck plate and girder under bending loads

机译:弯曲载荷下激光焊接腹板芯夹心甲板板与大梁之间的相互作用

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Present paper investigates the interaction between laser-welded web-core sandwich deck plate and supporting girder under bending loads. The study is based on two linear-elastic Finite Element (FE) approaches, i.e. one using beam elements to model the girder and shell elements to model the homogenized web-core sandwich plate. With this approach the obtained FE model is considerably smaller than in the case of modeling the full, periodic, 3D geometry with shell elements. The FE solution results in stress resultants for beam and shell elements. These stress resultants do not describe accurately the periodic stress response of the sandwich plate or shear stress distribution at girder web. Therefore, the paper utilizes analytical methods to calculate these stress components from the obtained Finite Element solution. The second computational approach is based on modeling the actual 3D topology with shell elements. The two approaches are shown to be in very good agreement. The investigation shows that the effective flange width of the sandwich is different for the top and bottom face plates indicating that the interaction is different for these face plates. The present study also shows that this difference between the two faces depends strongly on the orientation of the web plates of the sandwich with respect to girder axis and the stiffness of the girder. The investigation also shows that the normal stress response in bending is dominated by the interaction between the sandwich plate and the girder, but also by the shear-induced normal stresses at the outer surface of the plate.
机译:本文研究了在弯曲载荷下激光焊接腹板芯夹心甲板板与支撑梁之间的相互作用。这项研究基于两种线性弹性有限元(FE)方法,即一种使用梁单元对梁进行建模而使用壳单元对均质腹板-芯夹心板进行建模的方法。通过这种方法,所获得的有限元模型比使用壳单元对完整的周期性3D几何模型进行建模的情况要小得多。有限元解决方案导致梁和壳单元的应力合力。这些应力合成不能准确描述夹层板的周期性应力响应或梁腹板上的剪应力分布。因此,本文利用分析方法从获得的有限元解决方案中计算这些应力分量。第二种计算方法是基于使用外壳元素对实际3D拓扑建模的。两种方法显示出非常好的一致性。研究表明,顶面板和底面板的三明治有效法兰宽度不同,这表明这些面板的相互作用也不同。本研究还表明,两个面之间的这种差异在很大程度上取决于夹心腹板相对于大梁轴线的方向和大梁的刚度。研究还表明,弯曲时的法向应力响应主要由夹心板和大梁之间的相互作用所决定,但也受剪应力在板的外表面处引起。

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