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Comparison of viscoelastic finite element models for laminated glass beams

机译:叠层玻璃梁粘弹性有限元模型的比较

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Laminated glass elements, which consist of stiff elastic glass layers connected with a compliant viscoelastic polymer foil, exhibit geometrically non-linear and time/temperature-sensitive behavior. In computational modeling, the viscoelastic effects are often neglected or a detailed continuum formulation typically based on the volumetric-deviatoric elastic-viscoelastic split is used for the interlayer. Four layerwise beam theories are introduced in this paper, which differ in the non-linear beam formulation at the layer level (von Karman/Reissner) and in constitutive assumptions for the interlayer (a viscoelastic solid with the time-independent bulk modulus/Poisson ratio). We perform detailed verification and validation studies at different temperatures and compare the accuracy of the selected formulation with simplified elastic solutions used in practice. We show that all the four formulations predict very similar responses. Therefore, our suggestion is to use the most straightforward formulation that combines the von Karman model with the assumption of time-independent Poisson ratio. The simplified elastic model mostly provides response in satisfactory agreement with full viscoelastic solutions. However, it can lead to unsafe or inaccurate predictions for rapid changes of loading. These findings provide a suitable basis for extensions towards laminated plates and glass layer fracture, owing to the modular format of layerwise theories. (C) 2017 Elsevier Ltd. All rights reserved.
机译:夹层玻璃元件,由稳定的粘弹性聚合物箔连接的刚性弹性玻璃层组成,表现出几何非线性和时间/温度敏感的行为。在计算建模中,通常忽略粘弹性效应或通常基于体积偏离有弹性粘弹性分裂的详细连续制剂用于中间层。本文介绍了四个层光束理论,其在层水平(von Karman / Reissner)处的非线性梁配方和中间层的本构体假设中不同(具有违背时间的散装模量/泊松比的粘弹性固体)。我们在不同温度下进行详细的验证和验证研究,并比较所选配方的准确性,其简化的弹性解决方案在实践中使用。我们表明所有四种配方都预测了非常相似的响应。因此,我们的建议是利用最简单的制定,将von Karman模型与时间无关的泊松比的假设相结合。简化的弹性模型主要提供令人满意的粘弹性解决方案的响应。但是,它可以导致不安全或不准确的预测,以便加载的快速变化。由于层状理论的模块化格式,这些发现为延伸到层压板和玻璃层骨折提供了合适的基础。 (c)2017 Elsevier Ltd.保留所有权利。

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