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Application of a three-dimensional mixed finite element model to the flexure of sandwich plate

机译:三维有限元混合模型在夹层板弯曲中的应用

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The bending analysis of sandwich plates consisting of very stiff face sheets and a comparatively flexible core material offers challenge due to large variation in the magnitude of stress and strain components in the face and in the core regions of the plate. Similarly, the displacement fields do vary in zigzag manner at the layer interface of stiff face sheet and the soft core, thereby making the transverse strains highly discontinuous at such layer interfaces. All these behavioural aspects indicate that only an individual layerwise model can appropriately analyze sandwich plates. A layerwise (three-dimensional), mixed, 18-node finite element (FE) model developed by Ramtekkar et al. [Mech. Adv. Mater. Struct. 9 (2002) 133] has been employed for the accurate evaluation of transverse stresses in sandwich laminates. The FE model consists of six degrees-of-freedom (three displacement components and three transverse stress components τ_(xz), τ_(yz), σ_z, where z is the thickness direction) per node which ensures the through thickness continuity of transverse stress and displacement fields. Results obtained by using the FE model have shown excellent agreement with the available elasticity solutions for sandwich plates. Additional results on the variation of transverse strains have also been presented to highlight the magnitude of discontinuity in these quantities due to difference in properties of the face and the core materials of sandwich plates.
机译:由非常坚硬的面板和相对柔软的芯材组成的夹心板的弯曲分析由于板的表面和芯区的应力和应变分量的大小存在很大差异而提出了挑战。类似地,位移场在刚性面板和软芯的层界面处确实以之字形变化,从而使得在这种层界面处的横向应变高度不连续。所有这些行为方面都表明,只有一个单独的分层模型才能适当地分析夹心板。 Ramtekkar等人开发的分层(三维)混合18节点有限元(FE)模型。 [机械。进阶母校结构。 [9(2002)133]已被用于精确评估夹层板中的横向应力。 FE模型每个节点包含六个自由度(三个位移分量和三个横向应力分量τ_(xz),τ_(yz),σ_z,其中z为厚度方向),这确保了横向应力的贯穿厚度连续性和位移场。通过使用有限元模型获得的结果表明,与夹层板可用的弹性解非常吻合。还提出了有关横向应变变化的其他结果,以突出由于面和夹心板核心材料特性的差异而导致的不连续量。

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