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Research on Temperature and Strain Rate Dependent Viscoelastic Response of Polyvinyl Butaral Film

机译:聚乙烯丁胺膜的温度和应变率依赖性粘弹性响应研究

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The mechanical behavior of polyvinyl butyral (PVB) film plays an important role in windshield crashworthiness and pedestrian protection and should be depth study. In this article, the uniaxial tension tests of PVB film at various strain rates (0.001 s-1, 0.01 s-1, 0.1 s-1, 1 s-1) and temperatures (-10°C, 0°C, 10°C, 23°C, 40°C, 55°C, 70°C) are conducted to investigate its mechanical behavior. Then, temperature and strain rate dependent viscoelastic characteristics of PVB are systematically studied. The results show that PVB is a kind of temperature and strain rate sensitive thermal viscoelastic material. Temperature increase and strain rate decrease have the same influence on mechanical properties of PVB. Besides, the mechanical characteristics of PVB change non-linearly with temperature and strain rate. Finally, two thermal viscoelastic constitutive model (ZWT model and DSGZ model) are suggested to describe the tension behavior of PVB film at various strain rates and temperatures. Tension response of PVB at 0°C-70°C is simulated based on ZWT model, while tension response of PVB at -10°C is described using DSGZ model. The fitting results show good agreement with its corresponding experimental results. Results may provide basic experimental data and theoretical support to explore energy absorbing characteristics and safety design of PVB laminated glass.
机译:聚乙烯丁醛(PVB)薄膜的力学行为在挡风玻璃持续和行人保护中起着重要作用,应该是深度研究。在本文中,在各种应变速率下PVB膜的单轴张力试验(0.001S-1,0.01S-1,0.1S-1,1S-1)和温度(-10°C,0°C,10° C,23℃,40℃,55℃,70℃)被进行以研究其机械行为。然后,系统研究了PVB的温度和应变率依赖性粘弹性特性。结果表明,PVB是一种温度和应变率敏感的热粘弹性材料。温度升高和应变速率降低对PVB的机械性能具有相同的影响。此外,PVB的机械特性与温度和应变速率非线性地变化。最后,建议两个热粘弹性本构型模型(ZWT模型和DSGZ模型)描述PVB膜在各种应变速率和温度下的张力行为。基于ZWT模型模拟PVB在0°C-70℃下的张力响应,而使用DSGZ模型描述PVB在-10℃下的张力响应。拟合结果与其相应的实验结果表现出良好的一致性。结果可提供基本的实验数据和理论支持,以探索PVB夹层玻璃的能量吸收特性和安全性设计。

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