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Structural Optimization of Laminated Glass Plate Using Discrete Element Method

机译:不同元件法的层压玻璃板的结构优化

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Laminated glass is widely used to enhance structural functions. The impact fracture behavior of laminated glass is more complicated than that of single glass, because of the combined influences of the large deformation and delamination strengths. In this study, the impact fracture behavior of a laminated glass plate intended for the outside surface of a modern building has been studied by numerical simulations and experiments. This fracture simulation was calculated using a Discrete Element Method (DEM) based on non-continuum mechanics. The laminated glass structures have been optimized for attaining maximum durability against impact fracture based on the response surface method. In the optimum problem, the tensile strength of the interlayer and the adhesive strength between two pieces of glass and the interlayer are taken as the design variables. From the results of the optimization, it has been observed that the laminated glass difficult to break in the case that the tensile strength was high and that the adhesive strength was a little light. The penetration performance of an optimized laminated glass plate was noticeably better in comparison with a commercial laminated glass plate.
机译:夹层玻璃广泛用于增强结构功能。由于大变形和分层强度的综合影响,夹层玻璃的冲击断裂行为比单玻璃更复杂。在这项研究中,通过数值模拟和实验研究了用于现代建筑外表面的夹层玻璃板的冲击断裂行为。这种裂缝模拟使用基于非连续力学的离散元素法(DEM)计算。基于响应面法优化了层压玻璃结构以获得对抗抗冲击性抗冲击的最大耐久性。在最佳问题中,夹层的拉伸强度和两片玻璃和中间层之间的粘合强度被用作设计变量。从优化的结果中,已经观察到,在抗拉强度高的情况下,夹层玻璃难以破裂,并且粘合强度是一点光。与商业层压玻璃板相比,优化夹层板的穿透性能更好。

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