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Structural and acoustical performance of recycled glass bead panels

机译:再生玻璃珠板的结构和声学性能

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摘要

An investigation is conducted to determine the structural and acoustical properties of panels comprising a core of recycled glass beads bound in a matrix of polyurethane resin enveloped by two fibreglass facing sheets. This investigation is conducted in order assess the suitability of recycled glass bead panels in multifunctional applications in the built environment, especially in urban, built-up or noisy environments where both structural resistance and acoustic insulation are beneficial. In order to assess the acoustical performance of the panels, experiments to determine the transmission loss and absorption coefficients are performed using the transfer function method. It is shown that the panels provide effective insulation for typical urban built environments. Experiments are also described that are conducted to determine the modulus of elasticity of the fibreglass sheets, the compressive strength of the bead cores and the behaviour of the recycled glass bead panels when loaded in bending. A design method to predict the ultimate moment resistance of a panel in bending is proposed, which is shown to provide conservative and safe-sided predictions when compared to the experimental results. It is shown that, when employed in a flooring system, recycled glass bead panels can achieve usable spans under typical floor loads expected in commercial and residential structural applications, while also possessing the acoustic insulation performance required of a modern and comfortable dwelling or workspace. This combination of structural and acoustic performance has considerable potential to increase material efficiency in construction. (C) 2020 Elsevier Ltd. All rights reserved.
机译:进行了研究以确定包含在由两个玻璃纤维面对板包覆的聚氨酯树脂基质中结合的再循环玻璃珠粒的结构和声学性质。该调查是为了评估循环玻璃珠板在内置环境中的多功能应用中的较好性,特别是在城市,内置或嘈杂的环境中的适用性,其中结构阻力和声学绝缘是有益的。为了评估面板的声学性能,使用传递函数方法执行确定传输损耗和吸收系数的实验。结果表明,该面板为典型的城市建造环境提供了有效的绝缘。还描述了进行实验,以确定玻璃纤维片的弹性模量,胎圈芯的抗压强度以及再循环玻璃珠板的行为加载弯曲时。提出了一种预测弯曲面板的最终力矩阻力的设计方法,其显示与实验结果相比提供保守和潜视的预测。结果表明,当在地板系统中使用时,再循环玻璃珠板可以在商业和住宅结构应用中预期的典型地板负载下实现可用的跨度,同时还具有现代和舒适的住宅或工作空间所需的声学绝缘性能。这种结构和声学性能的组合具有增加建筑材料效率的潜力。 (c)2020 elestvier有限公司保留所有权利。

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