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Vibration modeling of sandwich structures using solid-shell finite elements

机译:使用固体有限元的夹层结构振动建模

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摘要

The aim of this work is to propose a new finite element modeling for vibration of sandwich structures with soft core. Indeed, several approaches have been adopted in the literature to accurately model these types of structures, but show some limitations in certain configurations of high contrast of material properties or geometric aspect ratios between the different layers. In these situations, it is generally well-known that the use of higher-order or three-dimensional finite elements is more appropriate, but will generate a large number of degrees of freedom, and thereby, large CPU times. In this work, an alternative method is followed by considering the linear hexahedral solid-shell element previously developed by Abed-Meraim and Combescure [1]. This element is implemented into the commercial software ABAQUS Via a User Element (UEL) subroutine. Numerical tests on various cantilever sandwich beams are performed to show the efficiency of this approach.
机译:这项工作的目的是提出一种新的有限元模型,用于软芯夹层结构的振动。实际上,文献中已经采用了几种方法来对这些类型的结构进行精确建模,但是在材料特性或不同层之间的几何纵横比的高对比度的某些配置中显示了一些限制。在这些情况下,通常众所周知,使用高阶或三维有限元更为合适,但会产生大量的自由度,从而导致大量的CPU时间。在这项工作中,另一种方法是考虑先前由Abed-Meraim和Combescure [1]开发的线性六面体固体壳单元。该元素通过用户元素(UEL)子例程实现到商业软件ABAQUS中。对各种悬臂夹层梁进行了数值测试,以证明这种方法的效率。

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