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Flexural and shear behaviour of layered sandwich beams

机译:层状夹层梁的弯曲和剪切特性

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A new type of composite beam, referred to as Layered Sandwich Beam (LSB) is introduced in this study. The sandwich system consists of Glass Fiber Reinforced Polymer (GFRP) skins and Phenolic cores, and several layers of sandwich panels are bonded together with epoxy polymer matrix for manufacturing beams. To explore the suitability of this novel concept for structural applications, the flexural and shear behaviour of LSB have been investigated. Eight LSB, with four having layers horizontally oriented and the other four vertically oriented, have been tested under four-point bending and asymmetrical beam shear. A three-dimensional finite element model was developed using Strand7 to further understand the fundamental behaviour of the LSB. The results showed that the LSB has an increased sectional stability by preventing wrinkling and buckling of the composite skins and indentation failure. This improved the bending and shear strengths of the vertical LSB by 25% and 100%, respectively, compared with single sandwich beams in same orientation. While horizontal LSB provided a higher bending stiffness, the vertical beams exhibited higher shear strength due to the orientation of the skins. The finite element model can reliably predict the fundamental behaviour of the LSB in different orientations and loading configurations, within -10% to +14%. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中介绍了一种新型的复合梁,称为分层夹心梁(LSB)。夹层系统由玻璃纤维增​​强聚合物(GFRP)蒙皮和酚醛树脂芯组成,多层夹层板与环氧聚合物基体粘结在一起以制造梁。为了探索这种新颖概念对结构应用的适用性,对LSB的弯曲和剪切行为进行了研究。已经在四点弯曲和不对称梁剪切下测试了八个LSB,其中四个具有水平取向的层,另外四个具有垂直取向的层。使用Strand7开发了三维有限元模型,以进一步了解LSB的基本行为。结果表明,LSB通过防止复合材料蒙皮的起皱和屈曲以及压痕破坏而提高了截面稳定性。与相同方向的单夹层梁相比,这将垂直LSB的弯曲强度和剪切强度分别提高了25%和100%。水平LSB提供较高的弯曲刚度,而垂直梁由于蒙皮的方向而具有较高的剪切强度。有限元模型可以在-10%到+ 14%的范围内可靠地预测LSB在不同方向和载荷配置下的基本行为。 (C)2018 Elsevier Ltd.保留所有权利。

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