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Post-failure behavior of laminated glass beams using different interlayers

机译:使用不同夹层的夹层玻璃梁的失效后行为

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An experimental investigation is presented on the mechanical response of progressively damaged Laminated Glass (LG) beams assembled with modified polyvinyl butyral (PVB)-based interlayers (DG41). While it is known that ionoplast interlayers significantly improve the load-bearing capacity and residual strength of damaged LG elements, limited experimental data are available on recently developed compounds such as DG41. The role of interlayers increases with the damage level within LG elements: when glass plies break, LG stiffness and strength depend on the ability of the interlayer to couple intact glass plies and fragments of shattered ones. For damaged LG beams, the consequences of the increases in volume of a broken tempered glass plies are discussed. In particular, the interlayer activates two competing effects on the undamaged glass plies affecting the residual carrying capacity: a positive “tension-stiffening” over time and the tendency of tempered glass to expand when fractured that triggers “negative” stress/strain fields in undamaged glass plies.
机译:进行了实验研究,研究了逐渐损坏的夹层玻璃(LG)梁与改性聚乙烯醇缩丁醛(PVB)基中间层(DG41)组装后的机械响应。众所周知,电离层中间层可以显着提高受损LG元件的承载能力和残余强度,但有关最近开发的化合物(例如DG41)的有限实验数据仍然可用。中间层的作用随着LG元件内的损坏程度而增加:当玻璃层破裂时,LG的刚度和强度取决于中间层将完整的玻璃层和破碎的碎片结合的能力。对于损坏的LG光束,讨论了钢化玻璃帘布层破裂后体积增加的后果。特别是,中间层在未损坏的玻璃板上激活了两个相互竞争的效应,从而影响剩余的承载能力:随着时间的推移出现正的“拉伸刚度”,而钢化玻璃在断裂时会膨胀,从而在未损坏的情况下触发“负”应力/应变场。玻璃层。

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