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Effects of elevated temperature on the shear response of PET and PUR foams used in composite sandwich panels

机译:高温对复合夹芯板所用PET和PUR泡沫的剪切响应的影响

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Composite sandwich panels comprising fibre reinforced polymer (FRP) skins and lightweight material cores are being increasingly used in civil engineering. In several applications, such as facades, roof structures and bridge decks, these panels may experience a wide range of in-service temperatures. This paper presents experimental and analytical investigations about the effects of elevated temperature on the shear response of polyethylene terephthalate (PET) and polyurethane (PUR) foams used in composite sandwich panels. The experimental programme included (ⅰ) DMA and DSC/TGA tests, aimed at assessing the glass transition and decomposition processes underwent by those foams; and (ⅱ) losipescu tests for temperatures ranging from -20 ℃ to 120 ℃, in order to characterise their shear response. The analytical study comprised the assessment of the accuracy of different empirical (relaxation) models in describing the shear modulus reduction with temperature of those polymeric foams. Results obtained show that with increasing temperature, the shear responses of PET and PUR foams become more markedly nonlinear. In addition, the shear moduli of these foams suffer considerable reductions, particularly for the PET foam; although at ambient temperature (~20 ℃) the PET foam is 3 times stiffer than the PUR foam, at 80 ℃ their shear moduli become similar, being respectively 24% and 66% of those at ambient temperature. All relaxation models assessed in this study were able to simulate with good accuracy the variation of the shear modulus of both foams with temperature.
机译:包含纤维增强聚合物(FRP)蒙皮和轻质材料芯的复合夹芯板正越来越多地用于土木工程中。在诸如外墙,屋顶结构和桥面等多种应用中,这些面板可能会经历广泛的使用温度。本文介绍了高温对复合夹芯板所用聚对苯二甲酸乙二醇酯(PET)和聚氨酯(PUR)泡沫的剪切响应影响的实验和分析研究。实验程序包括(ⅰ)DMA和DSC / TGA测试,旨在评估这些泡沫所经历的玻璃化转变和分解过程; (ⅱ)losipescu测试在-20℃至120℃的温度范围内,以表征其剪切响应。分析研究包括评估不同经验(松弛)模型在描述这些聚合物泡沫的剪切模量随温度降低时的准确性。所得结果表明,随着温度的升高,PET和PUR泡沫的剪切响应变得更加明显的非线性。另外,这些泡沫的剪切模量显着降低,特别是对于PET泡沫而言。尽管在环境温度(〜20℃)下,PET泡沫的硬度是PUR泡沫的3倍,但在80℃时,它们的剪切模量变得相似,分别是环境温度下的24%和66%。在这项研究中评估的所有松弛模型都能够高精度地模拟两种泡沫的剪切模量随温度的变化。

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