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Blast test and numerical simulation of point-supported glazing

机译:点支式玻璃的爆破试验和数值模拟

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The blast resistance of point-supported laminated glass curtain wall has been investigated by means of field blast tests and numerical simulation. Nine site blast tests were carried out, considering two types of glass thickness and six TNT charges ranging from 0.4 to 30 kg. The overpressure and displacement time histories were measured and the failure modes were observed. The overpressure obtained from the measurement panel exhibited a typical pattern of near-field blast with a steep increase followed by a rapid decay within a few milliseconds. The displacement response of the laminated glass panels increased with the increase in the TNT charge almost linearly in the smaller tests (scaled distance ranging 4.5-7 m/kg(1/3)), which was in line with the increase in the blast impulse in these tests. The failure mode of the point-supported laminated glass panels was featured by tearing off of the polyvinyl butyral layer around the support area, while the glass shards still adhered to the polyvinyl butyral interlayer. Nonlinear dynamic finite element simulation agrees reasonably well with the results from the blast tests. Severe stress concentration has been predicted to occur at the rim of the support holes, leading to initiation of failure at these supports, and this also agrees with the failure mode observed from the blast test. Finally, parametric studies are carried out to investigate the influence of TNT charge weight and the geometric parameters of the panel on the blast response of the glass curtain wall.
机译:通过现场爆破试验和数值模拟研究了点支撑夹层玻璃幕墙的抗爆性能。考虑到两种玻璃厚度和六种TNT装药量(从0.4到30 kg),进行了九次现场爆炸测试。测量了超压和位移时间的历史,并观察了破坏模式。从测量面板获得的超压表现出典型的近场爆炸模式,其急剧增加,然后在几毫秒内迅速衰减。在较小的试验(标度距离范围为4.5-7 m / kg(1/3))中,夹层玻璃板的位移响应随TNT电荷的增加几乎呈线性增加,这与爆炸冲击力的增加是一致的在这些测试中。点支撑夹层玻璃板的破坏模式的特点是撕裂了支撑区域周围的聚乙烯醇缩丁醛层,而玻璃碎片仍粘附在聚乙烯醇缩丁醛中间层上。非线性动态有限元模拟与爆炸测试的结果相当吻合。预计在支撑孔的边缘会出现严重的应力集中,从而导致这些支撑处发生破坏,这也与爆破测试中观察到的破坏模式一致。最后,进行参数研究以研究TNT装料重量和面板几何参数对玻璃幕墙爆炸响应的影响。

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