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INFLUENCE OF DENSITY ON THE BEHAVIOR OF SANDWICH PANELS

机译:密度对三明治面板行为的影响

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High strength carbon and glass composites are being used to fabricate sandwich panels with high specific strengths. Typically, organic polymers are used as the matrix for binding the fabrics and adhesion to wood. Unfortunately, organic matrices are often flammable and leave structural elements susceptible to rapid damage and collapse in the event of a fire. The results reported in this paper deal with the performance of sandwich panels made using an inorganic polymer matrix. The room-temperature curing resin is called Geopolymer and is resistant up to 1000 deg C. Using this inorganic matrix, alkali-resistant glass and high strength carbon tows and fabrics were laminated onto oak and lightweight balsa wood cores to obtain rigid and high strength sandwich panels. The primary variables investigated were: the density of wood, the thickness of the wood cores, and the amount and type of reinforcement on the facings. One hundred and thirty beams were tested in flexure to determine the load-deflection response of these sandwich composites. The beams were analyzed as reinforced wood beams using the concepts of composite action and flexure theory for linearly elastic and elastic-plastic materials. The influence of density on flexural strength, stiffness, toughness, and specific strength were also evaluated. Lower density cores provide better performance and exhibited the largest increases in most categories. Flexural theory using linear elastic material behavior provides good prediction in the linear range. However non-linear analysis is needed to predict the strength accurately. As the density reduces, the shear stiffness plays a major role in the failure mechanism.
机译:高强度碳和玻璃复合材料用于制造具有高比强度的夹层面板。通常,有机聚合物用作与木材结合和粘附到木材的基质。不幸的是,有机基质通常是易燃的,并且在发生火灾时易受易受损坏和塌陷的结构元素。本文报道了本文报告了使用无机聚合物基质制成的夹层面板的性能。室温固化树脂称为地质聚合物,耐高达1000℃。使用这种无机基质,耐碱玻璃和高强度碳粉末和织物层压到橡木和轻质的Balsa木材上,以获得刚性和高强度三明治面板。研究的主要变量是:木材的密度,木质芯的厚度,以及面部上的加固量和类型。在弯曲中测试一百三十梁以确定这些夹层复合材料的载荷偏转响应。分析光束作为增强木梁,使用复合动作和挠性理论的概念,用于线性弹性和弹性塑料材料。还评估了密度对弯曲强度,刚度,韧性和特异性强度的影响。较低的密度核心提供更好的性能,并且大多数类别的最大增加。使用线性弹性材料行为的弯曲理论在线性范围提供良好的预测。然而,需要准确地预测强度的非线性分析。随着密度减少,剪切刚度在故障机制中起着重要作用。

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