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Dynamic Mechanical Thermal Analysis of EVA and PVB Polymeric Interlayers in Low Temperatures

机译:低温EVA和PVB聚合物中间层的动态机械热分析

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Many examples of glass load bearing structures such as beams,panes,balustrades,columns or even stairs can be found in a current architecture.These members are usually made of laminated glass panels.Glass plies of aTaminated panel are bonded with polymeric interlayer significantly influencing shear forces transfer between them.It principally depends on a polymer shear stiffness which is affected by an ambient temperature and load duration.There is still general lack of knowledge regarding shear stiffness of most polymeric interlayers.Civil engineers thus design laminated glass members with excessive caution neglecting positive shear coupling of the glass plies provided by the interlayer.This approach leads to uneconomical and over-sized glass bearing structures profoundly preventing an extensive use of laminated glass in civil engineering.There are many polymer interlayers of different chemical composition available on the market.Mechanical properties of most of them are unfortunately not available for civil engineers dealing with laminated glass constructions design.This paper is focused on dynamic shear modulus of EVA(ethylene-vinyl acetate)and PVB(polyvinylbutyral)interlayer and their experimental investigation as a function of temperature and loading ratio.One possible way of determining this modulus is a shear dynamical thermal analysis(DMTA)which further enables to derive time and temperature dependent shear stiffness of EVA and PVB.This experimentally investigated property helps engineers design safer and cheaper glass constructions,possibly extending the use of laminated glass in a current architecture.
机译:在电流架构中可以发现诸如梁,窗格,栏杆,柱,柱,柱等玻璃承载结构的许多示例,这些构件通常由夹层玻璃板制成。釉质贴层用聚合物中间层粘合显着影响剪切它们之间的力转移。主要取决于受环境温度和负载持续时间影响的聚合物剪切刚度。仍然普遍缺乏关于大多数聚合物中间层间的剪切刚度的知识.Civil工程师因此设计具有过度小心忽略的夹层玻璃构件中间层提供的玻璃层的正剪切耦合。该方法导致不经济和过度尺寸的玻璃轴承结构,防止在土木工程中广泛使用夹层玻璃。在市场上可获得许多不同化学成分的聚合物层间。遗憾的是,大多数人的机械性能都不是n可用于处理层压玻璃结构设计的土木工程师。本文重点关注EVA(乙烯 - 乙酸乙烯酯)和PVB(聚乙烯乙基丁酯)中间层的动态剪切模量及其作为温度和负载比率的函数的实验研究。可能的方式确定该模量是一种剪切动态热分析(DMTA),进一步实现了EVA和PVB的时间和温度依赖性剪切刚度。本实验研究的财产有助于工程师设计更安全,更便宜的玻璃结构,可能会延长夹层玻璃的使用当前的架构。

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