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Experimental and Numerical Study of Viscoelastic Properties of Polymeric Interlayers Used for Laminated Glass: Determination of Material Parameters

机译:夹层玻璃用聚合物中间层粘弹性的实验和数值研究:材料参数的确定

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摘要

An accurate material representation of polymeric interlayers in laminated glass panes has proved fundamental for a reliable prediction of their response in both static and dynamic loading regimes. This issue is addressed in the present contribution by examining the time–temperature sensitivity of the shear stiffness of two widely used interlayers made of polyvinyl butyral (TROSIFOL BG R20) and ethylene-vinyl acetate (EVALAM 80-120). To that end, an experimental program has been executed to compare the applicability of two experimental techniques, (i) dynamic torsional tests and (ii) dynamic single-lap shear tests, in providing data needed in a subsequent calibration of a suitable material model. Herein, attention is limited to the identification of material parameters of the generalized Maxwell chain model through the combination of linear regression and the Nelder–Mead method. The choice of the viscoelastic material model has also been supported experimentally. The resulting model parameters confirmed a strong material variability of both interlayers with temperature and time. While higher initial shear stiffness was observed for the polyvinyl butyral interlayer in general, the ethylene-vinyl acetate interlayer exhibited a less pronounced decay of stiffness over time and a stiffer response in long-term loading.
机译:事实证明,层压玻璃板中聚合物中间层的准确材料表示对于可靠地预测其在静态和动态加载方式下的响应至关重要。通过研究两种广泛使用的由聚乙烯醇缩丁醛(TROSIFOL BG R20)和乙烯-乙酸乙烯酯(EVALAM 80-120)制成的中间层的剪切刚度的时温敏感性,可以解决本问题。为此,已经执行了一个实验程序来比较两种实验技术(i)动态扭转试验和(ii)动态单圈剪切试验的适用性,以提供适当材料模型的后续校准所需的数据。在此,注意力仅限于通过线性回归和Nelder-Mead方法的组合来识别广义Maxwell链模型的材料参数。粘弹性材料模型的选择也得到了实验的支持。所得的模型参数证实了两个中间层的材料随温度和时间的强烈变化。虽然通常在聚乙烯醇缩丁醛中间层中观察到较高的初始剪切刚度,但乙烯-乙酸乙烯酯中间层表现出的刚度随时间的衰减不明显,并且在长期载荷下响应较硬。

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