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Experimental Studies on Viscoelasticity of Film Materials in Laminated Glass Sheets

机译:夹层玻璃板中薄膜材料粘弹性的实验研究

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摘要

Polyvinyl butyral (PVB) film and SentryGlas Plus (SGP) film have been widely used in automotive windshield and architecture curtain serving as protective interlayer materials. Viscoelasticity is the unique property of such film materials, which can contribute to improving impact resistance and energy absorbing characteristics of laminated glass. In this study, the uniaxial tensile creep and stress relaxation tests are conducted to investigate the viscoelasticity of PVB and SGP films used in laminated glass. Firstly, tensile creep and stress relaxation tests of PVB film (0.76mm) and SGP film with three thickness (0.89mm, 1.14mm and 1.52mm) are conducted using Instron universal testing machine to obtain creep and stress relaxation curves. Afterwards, both viscoelastic models (Burgers model, Maxwell-Weichert model) and empirical equations (Findley power law, Kohlrausch equation) are applied to simulate the creep and stress relaxation results. The simulating results from both models and empirical equations are in good agreement with the creep and relaxation experimental results. Furthermore, an additional effort is carried out to analyze the influence of material properties on parameters of viscoelastic models and empirical equations. Results may provide basic experimental data and theoretical support to explore energy absorbing characteristics and safety design of laminated glass.
机译:聚乙烯醇缩丁醛(PVB)膜和SentryGlas Plus(SGP)膜已广泛用于汽车挡风玻璃和用作保护夹层材料的建筑幕布。粘弹性是这种膜材料的独特性能,可有助于改善夹层玻璃的抗冲击性和能量吸收特性。在这项研究中,进行了单轴拉伸蠕变和应力松弛测试,以研究夹层玻璃中PVB和SGP膜的粘弹性。首先,使用Instron万能试验机对0.76mm厚的PVB膜和0.89mm,1.14mm和1.52mm三种厚度的SGP膜进行拉伸蠕变和应力松弛测试,得出蠕变和应力松弛曲线。然后,使用粘弹性模型(Burgers模型,Maxwell-Weichert模型)和经验方程式(Findley幂定律,Kohlrausch方程)来模拟蠕变和应力松弛结果。模型和经验方程的仿真结果与蠕变和松弛实验结果吻合良好。此外,还进行了额外的工作来分析材料特性对粘弹性模型和经验方程参数的影响。研究结果可为探索夹层玻璃的吸能特性和安全设计提供理论基础和理论依据。

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