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Blast resistance of laminated glass facades

机译:夹层玻璃幕墙的抗爆性

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摘要

The aim of this thesis is to improve the understanding of the behaviour of Polyvinyl Butyral (PVB) laminated annealed glass façade panels subjected to blast loading. udA full scale blast test was performed. During this, deflection and strain data were collected employing digital image correlation techniques (DIC). Local reaction forces were measured using several pairs of strain gauges on the support. The full field deflection and strain data obtained were in line with those observed in historical tests. The strain gauge data available showed that the reaction forces varied along the edge, with higher values being reached at the quarter length gauge locations. The results from this test and from other historical experiments were used to calculate the reaction forces along the entire perimeter of the glass pane. The results showed that the forces reach an early peak before the glass failure, and then rise gradually approaching a plateau at high central deflections. udTo explain the specific form of this force time history, the detailed behaviour of the laminated material after the glass skins failed was studied. Existing experimental data was employed to fit a material model to the PVB material. Two Prony series models with different hyperelastic springs and a model employing a full finite deformation viscoelastic law derivation were employed. It was found that the finite deformation viscoelastic model could represent the material’s behaviour more accurately and fully include its rate dependency.udOne of the PVB models was employed to study the delamination between the glass and the membrane. Delamination energies were found for different speeds of deformation, and these parameters were employed to study the delamination of samples presenting different crack arrangements. The results showed that these had only a limited influence on the behaviour of the composite.
机译:本文的目的是增进人们对承受爆破载荷的聚乙烯醇缩丁醛(PVB)层压退火玻璃幕墙性能的了解。 ud进行了全面爆炸测试。在此期间,使用数字图像相关技术(DIC)收集挠度和应变数据。使用支撑架上的几对应变仪测量局部反作用力。获得的全场挠度和应变数据与历史测试中观察到的一致。现有的应变仪数据表明,反作用力沿边缘变化,在四分之一长度计位置处达到更高的值。该测试和其他历史实验的结果用于计算沿玻璃板整个周边的反作用力。结果表明,在玻璃破裂之前,力达到了一个早期峰值,然后在高中心挠度下逐渐升高并趋于平稳。为了解释这种作用时间历史的具体形式,研究了玻璃蒙皮失效后层压材料的详细行为。现有的实验数据被用来使材料模型适合PVB材料。使用了两个具有不同超弹性弹簧的Prony系列模型和一个采用完全有限变形粘弹性定律推导的模型。结果发现,有限变形粘弹性模型可以更准确地表示材料的行为,并充分包含材料的速率依赖性。 udPVB模型之一用于研究玻璃与膜之间的分层。发现了不同变形速度下的分层能量,这些参数被用来研究具有不同裂纹排列的样品的分层。结果表明,这些对复合材料的性能仅有有限的影响。

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