首页> 外文期刊>Journal of Sandwich Structures and Materials >Flexural and axial behaviour of sandwich panels with bio-based flax fibre-reinforced polymer skins and various foam core densities
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Flexural and axial behaviour of sandwich panels with bio-based flax fibre-reinforced polymer skins and various foam core densities

机译:夹心板与生物基亚麻纤维增强聚合物皮肤的弯曲和轴向行为,以及各种泡沫核心密度

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摘要

This study investigates the effect of foam core density on the behaviour of sandwich panels with novel bio-composite unidirectional flax fibre-reinforced polymer skins, along with a comparison to panels of conventional glass-FRP skins. Eighteen 1000mm long flexural specimens and 18500mm long stub column specimens were fabricated and tested. All specimens had a foam core of 100x50mm(2) cross-section with symmetrical 100mm wide skins. The study compares the effect of three separate polyisocyanurate foam cores when used in conjunction with either three layers of flax fibre-reinforced polymer or a single glass-FRP layer for each skin. Flexural specimens were tested in four-point bending and stub columns were tested under axial compression with pin-pin end conditions. Doubling the core density from 32 to 64kg/m(3) and tripling the density to 96kg/m(3) led to flexural strength increases of 82 and 213%, respectively, for flax fibre-reinforced polymer skinned panels, and comparable increases in glass-FRP skinned panels. Similarly, flax fibre-reinforced polymer-skinned columns showed similar increases in ultimate axial capacity of 85% and 196%, while glass-FRP- skinned columns experienced lower increases when core density was varied. The three-layered flax fibre-reinforced polymer skin, only 17% thicker than the single layer glass-FRP skin, was shown to provide equivalent flexural and axial strengths at all three core densities, within -5 to +13%.
机译:本研究研究了泡沫芯密度对具有新型生物复合单向亚麻纤维增强聚合物皮肤的夹层板的行为的影响,以及与常规玻璃-FRP皮肤的面板的比较。制造和测试18800mm长的弯曲标本和18500mm长的短柱样品。所有标本都有100x50mm(2)横截面的泡沫芯,具有对称的100mm宽的皮肤。该研究比较了三个单独的多异氰脲酸酯泡沫芯的作用与每种皮肤的三层亚麻纤维增强聚合物或单个玻璃-FRP层一起使用。在四点弯曲中测试弯曲标本,并在轴压缩下用引脚销端条件进行测试。将核心密度从32〜64kg / m(3)加长,并将密度增加到96kg / m(3)导致抗弯曲强度增加82%和213%,用于亚麻纤维增强聚合物皮肤面板,以及可比增加的增加玻璃FRP皮肤面板。类似地,亚麻纤维增强的聚合物皮肤柱显示出相似的轴向容量增加85%和196%,而当核心密度变化时,玻璃-FRP皮肤柱的较低柱子较低。三层亚麻纤维增强聚合物皮肤,仅比单层玻璃纤维皮肤厚17%,显示在所有三个核心密度下提供等效的弯曲和轴向强度,在-5至+ 13%内。

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