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Novel Studies on Thermo-Mechanical Properties of Structural Glass with and without Lamination

机译:具有和无层压结构玻璃的热机械性能的新研究

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The attractiveness of glass is something that occupied the world market with a unique claim. It has many applications that go beyond the provision of visual aesthetics, which includes a view of the inside and out. Due to extreme levels of clarity, structural glazing may be so transparent that it may go unnoticed by design or make a strong visual impact such as the focal point of a building. This paper focused on structural glass with various laminated/laminated conditions that were used to investigate the Dynamic Mechanical Properties. The storage modulus (G'), loss modulus (G'') and damping factor (tan delta) were determined at various levels, ranging from room temperature to elevated temperatures (250 °C) to understand the behavior of glass structure with and without laminated glass over a range of temperatures. The G' & G'' were tested to understand the effect of bonding, fracture behavior between the pure glass and laminated glass to observe the response with respect to temperature. Results are found that G' and G'' improve over a range of temperatures for laminated glass with enlightening fracture behavior. Laminated glass also has a major influence on the damping factor, but it also depends on the laminated thickness and materials. Thermo-Mechanical Properties of laminated glass are more improved, without affecting the transferability of glass.
机译:玻璃的吸引力是占据世界市场的独特主张。它具有许多超出视觉美学的应用,包括内外的视图。由于极端的清晰度,结构玻璃窗可能是如此透明,即它可能会被设计忽视或产生强烈的视觉冲击,例如建筑物的焦点。本文集中在结构玻璃上,具有各种层压/层压条件,用于研究动态机械性能。在各个水平确定储存模量(G'),损耗模量(G'')和阻尼因子(TAN DELTA),从室温范围到高温(250°C),以了解玻璃结构的行为层压玻璃在一系列温度范围内。测试G'&G''以了解纯玻璃和层压玻璃之间的粘合,断裂行为,以观察相对于温度的响应。结果发现G'和G''改善了具有启发性裂缝行为的层压玻璃的一系列温度。夹层玻璃对阻尼因子产生了重大影响,但也取决于层压厚度和材料。夹层玻璃的热力学性能更加改善,不影响玻璃的可转移性。

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