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Effect of the polymer interlayer on the high-velocity soft impact response of laminated glass plates

机译:聚合物夹层对夹层玻璃板高速软冲击响应的影响

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The choice of the polymer interlayer is a key consideration for laminated aircraft windshields. Such windshields often employ chemically strengthened glasses and are required to withstand impact by birds, hail-stones and other foreign bodies. In the present study, windshields employing three different polymer interlayer materials were investigated under high-velocity impact by a soft projectile: Thermoplastic Polyurethane (TPU), Polyvinyl Butyral (PVB) and Ionoplast interlayer-SentryGlas®Plus (SGP). Parameters such as the polymer interlayer type and thickness, multi-layering the interlayer and the sensitivity of the behaviour of the windshield to the environmental temperature were studied. The performance was assessed through a series of laboratory-scale impact experiments (using a bird-substitute material) and modelled via finite element simulations (using a smoothed particle hydrodynamics approach). The experimental and numerical results were found to be in good agreement for the three polymer interlayers investigated. The polymer interlayer type was found to have the most significant effect on both the deformation and the failure of the laminated glass windows at room temperature, i.e. 25 °C. However, the influence of the polymer interlayer type became less pronounced at lower temperatures. The novel modelling that has been developed assists in the choice of the best polymer interlayer, including the multi-layering of interlayers, for complex windshield designs.
机译:聚合物夹层的选择是层压飞机挡风玻璃的关键考虑因素。这种挡风玻璃通常使用化学强化玻璃,并且需要承受鸟类,冰雹和其他异物的撞击。在本研究中,采用软弹丸在高速撞击下研究了采用三种不同聚合物夹层材料的挡风玻璃:热塑性聚氨酯(TPU),聚乙烯醇缩丁醛(PVB)和Ionoplast夹层-SentryGlas®Plus(SGP)。研究了诸如聚合物中间层的类型和厚度,中间层的多层以及挡风玻璃的行为对环境温度的敏感性等参数。通过一系列实验室规模的冲击实验(使用鸟替代材料)评估了性能,并通过有限元模拟(使用平滑粒子流体动力学方法)进行了建模。发现实验和数值结果与所研究的三个聚合物中间层吻合良好。发现在室温(即25°C)下,夹层类型的聚合物对夹层玻璃窗的变形和破坏都有最大的影响。然而,聚合物夹层类型的影响在​​较低温度下变得不太明显。已开发出的新颖模型可帮助选择最佳的聚合物夹层,包括用于复杂挡风玻璃设计的多层夹层。

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