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A Methodology for Enhancing the Shear Response of Sandwich Composite Panel: Sandwich Composite Panel with Stair Keys

机译:增强夹芯复合板剪切响应的方法:带楼梯键的夹芯复合板

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Objectives: In composite sandwich panel, delamination between the foam core and face sheet is due to inability to withstand shear load. Hence a methodology of introducing shear keys for enhancing the shear response to resist delamination is analysed in the present study. Methods/Statistical Analysis: The conventional sandwich panel under analysis is composed of Glass Fibre Reinforced Polymer (GFRP) skin with PVC (Polyvinyl chloride) foam core impregnated with epoxy resin. The present study is to introduce stair keys in between GFRP and PVC which are made by overlapping GFRP face sheets, with the length and depth to get the required step size. Parametric Finite Element (FE) investigation using ANSYS software has been performed to evaluate the foam core performance by grooving the foam material as stepped shapes. The effect of different length of the stepped grooves in foam material are analysed and its results are compared with conventional sandwich panel. The stair key response for number of steps ranging from n = 1, 3, 5 and 7 are investigated. Findings: The FE results showed an improvement in the shear stress response of the sandwich panel with stair grooved foam core with stair keys compared to conventional model. Also the stair inserts between the GFRP skin and the foam core increases the initial shear stiffness and ultimate shear strength of the proposed model of the sandwich panel. Application/Improvements: The present methodology acts as a new model of peel stopper mechanism, where the shear failure due to debonding of face sheet and foam core is rerouted to foam core. Also it is free from initial damage as there is no loss of solidarity of the bulk material at the foam core, cost effective and easy to design and manufacture compared to other pinning and stitching process.
机译:目标:在复合夹芯板中,泡沫芯和面板之间的分层是由于无法承受剪切载荷所致。因此,在本研究中分析了引入剪切键以增强剪切以抵抗抗蚀剂分层的方法。方法/统计分析:受分析的常规夹芯板由玻璃纤维增​​强聚合物(GFRP)蒙皮和浸有环氧树脂的PVC(聚氯乙烯)泡沫芯组成。当前的研究是在GFRP和PVC之间引入楼梯钥匙,这些楼梯钥匙是通过重叠GFRP面板制成的,具有长度和深度以获得所需的步长。已经通过使用ANSYS软件进行了参数有限元(FE)研究,通过将泡沫材料切成阶梯状来评估泡沫芯的性能。分析了泡沫材料中阶梯槽的不同长度的影响,并将其结果与常规夹芯板进行了比较。研究了n = 1、3、5和7范围内的台阶数的阶梯键响应。研究结果:有限元结果表明,与常规模型相比,带有带阶梯键的带阶梯槽泡沫芯的夹芯板的剪切应力响应有所改善。此外,GFRP蒙皮和泡沫芯之间的楼梯插入物增加了所提出的夹心板模型的初始剪切刚度和最终剪切强度。应用/改进:本方法学是一种剥离止动机构的新模型,该模型将由于面板和泡沫芯剥离引起的剪切破坏重新路由到泡沫芯。而且,由于没有其他损耗,因为与其他钉扎和缝合工艺相比,泡沫材料核心处的散装材料没有失去整体性,经济高效且易于设计和制造,因此不会受到初始损坏。

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