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Effective Stiffness Behaviour of Sandwich Beams under Uncoupled Bending and Torsion Loadings

机译:夹层梁下弯曲和扭转载荷下的夹层梁的有效刚度行为

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Sandwich geometries, mainly in the form of panels and beams, are commonly applied in various transportation industries, such as aerospace, aeronautic and automotive. Sandwich geometries represent important advantages in structural applications, namely high specific stiffness, low weight, and possibility of design optimization prior to manufacturing. The aim of this paper is to uncover the influence of the number of reinforcements (ribs), and of the thickness on the mechanical behavior of all-metal sandwich panels subjected to uncoupled bending and torsion loadings. In this study, four geometries are compared. The orientation of the reinforcements and the effect of transversal ribs are also considered in this study. It is shown that the all the relations are non-linear, despite the elastic nature of the analysis in the Finite Element software ANSYS MECHANICAL APDL.
机译:夹层几何形状,主要以面板和梁的形式,通常适用于各种运输行业,如航空航天,航空和汽车。夹层几何形状代表结构应用中的重要优势,即高特定刚度,低重量,以及在制造之前设计优化的可能性。本文的目的是揭示增强物(肋骨)的数量,以及对经受未耦合弯曲和扭转载荷的全金属夹层面板的机械行为的影响。在这项研究中,比较了四个几何形状。在本研究中也考虑了增强件的取向和横向肋的效果。结果表明,尽管有限元软件ANSYS机械APDL中的分析是分析的弹性性质,但所有关系都是非线性的。

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