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首页> 外文期刊>Glass Structures & Engineering >Investigations on the thermorheologically complex material behaviour of the laminated safety glass interlayer ethylene-vinyl-acetate
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Investigations on the thermorheologically complex material behaviour of the laminated safety glass interlayer ethylene-vinyl-acetate

机译:夹层安全玻璃夹层乙烯-醋酸乙烯酯热流变复合材料性能的研究

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摘要

Laminated safety glass has become an indispensable component in building construction, automotive and solar industry. It consists of at least two glass panes, that are laminated together with a polymeric interlayer. Mechanically speaking, the polymeric interlayer enables a shear transfer between the two glass panes. Here, the difficulty lies in the understanding of the real shear transmission. On the one hand, polymeric interlayers show a time dependent material behaviour, which can be described with a 'Prony-series' in the linear viscoelastic area. On the other hand, polymeric interlayers show a temperature dependent material behaviour. Hence, a Prony-series is only valid for one specific temperature. However, since relaxation is based on molecular movements and rearrangement processes, which can be thermally activated, an increase in temperature leads to an acceleration of the relaxation process. The time-temperature correlation can be taken into account by means of a Time-Temperature-Superposition-Principle' (TTSP). The relaxation curve of a thermorheologically simple material shifts solely horizontal along the time axis due to temperature changes, while its shape remains constant. Mathematically, this means, that all relaxation times of the Prony-series are multiplied by the same shift factor a_T Recent research of the authors shows, that some polymeric interlayers don't follow a simple TTSP. The experimental identification through 'Dynamical-Mechanical-Thermal-Analysis' as well as 'Differential Scanning Caliometry' and numerical incorporation of this thermorheologically complex material behaviour into state-of-the-art Finite-Element-Software will be investigated on the example of 'Ethylene-vinyl acetate' in the following paper.
机译:夹层安全玻璃已成为建筑,汽车和太阳能行业必不可少的组件。它由至少两个玻璃窗格组成,这些窗格与聚合物中间层层压在一起。从机械上来讲,聚合物夹层能够在两个玻璃板之间进行剪切传递。在这里,困难在于对真实剪切传递的理解。一方面,聚合物夹层表现出随时间变化的材料性能,这可以用线性粘弹性区域中的“ Prony系列”来描述。另一方面,聚合物中间层表现出温度依赖性的材料性能。因此,Prony系列仅对一个特定温度有效。然而,由于弛豫是基于分子的运动和重排过程,它们可以被热激活,所以温度的升高导致弛豫过程的加速。可以通过“时间-温度-叠加原理”(TTSP)来考虑时间-温度相关性。由于温度变化,热流变简单材料的弛豫曲线仅沿时间轴水平移动,而其形状保持恒定。从数学上讲,这意味着Prony系列的所有弛豫时间都乘以相同的偏移因子a_T作者的最新研究表明,某些聚合物中间层并不遵循简单的TTSP。将在以下示例中研究通过“动力学-机械-热分析”以及“差示扫描量热法”进行的实验鉴定,以及将这种热流变复杂的材料行为数值整合到最新的有限元软件中的方法以下论文中的“乙烯-乙酸乙烯酯”。

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  • 来源
    《Glass Structures & Engineering》 |2018年第2期|373-388|共16页
  • 作者单位

    Institute of Structural Mechanics and Design, Technische Universitat Darmstadt (Research Institute 1), Darmstadt, Germany;

    Institute and Laboratory for Structural Engineering, University of German Armed Forces Munich (Research Institute 2), Neubiberg, Germany;

    Institute of Structural Mechanics and Design, Technische Universitat Darmstadt (Research Institute 1), Darmstadt, Germany;

    Institute and Laboratory for Structural Engineering, University of German Armed Forces Munich (Research Institute 2), Neubiberg, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laminated glass; Polymeric interlayer; Thermorheological complex; Time-temperature-superposition;

    机译:夹层玻璃;聚合物夹层;热流变复合物;时间-温度叠加;

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