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Numerical and analytical investigation on the dynamic buckling behavior of glass columns under blast

机译:爆炸作用下玻璃柱动态屈曲行为的数值分析研究

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Current applications in buildings of structural glass elements often require design rules and formulations able to provide acceptable predictions for phenomena complex to describe, which generally depend on combination of several geometrical and mechanical aspects. The estimation of the buckling resistance of glass elements, for example, represents a topic of large interest for researchers, due to typical high slenderness ratios, limited tensile strength and brittle material behavior. In the paper, the buckling response of glass columns under impulsive orthogonal pressures (e.g. blast) and combined static com-pressive vertical loads (e.g. gravity loads or further service loads) is investigated. The dynamic buckling behavior of columns in out-of-plane bending is primarily analyzed. Advanced numerical nonlinear dynamic simulations are then performed on various laminated columns, by means of 3D numerical FE-models able to take into account the interaction of simultaneous loads and possible glass cracking. Analytical calculations are also carried-out by means of single-degree-of-freedom (SDOF) formulations derived from structural dynamics theories, in order to properly estimate blast and second-order effects on maximum deflections and corresponding tensile stresses. Finally, based on the rather good correlation generally found between numerical and analytical calculations, a design approach is proposed for practical estimation of buckling strength of glass elements in the analyzed loading and boundary conditions.
机译:结构玻璃元件建筑物中的当前应用通常需要能够为复杂描述的现象提供可接受的预测的设计规则和公式,这通常取决于几个几何和机械方面的组合。例如,由于典型的高细长比,有限的抗拉强度和脆性,玻璃元素的抗屈曲性估计对于研究人员来说是一个热门话题。在本文中,研究了玻璃圆柱在脉冲正交压力(例如爆炸)和静态静压组合垂直载荷(例如重力载荷或其他服务载荷)下的屈曲响应。首先分析了圆柱在平面外弯曲中的动态屈曲行为。然后,借助能够考虑同时载荷与可能的玻璃破裂的相互作用的3D数值有限元模型,对各种层压柱进行高级数值非线性动力学模拟。还可以通过从结构动力学理论得出的单自由度(SDOF)公式进行分析计算,以便正确估计爆炸和二次冲击对最大挠度和相应的拉应力的影响。最后,基于数值计算和分析计算之间通常存在的良好相关性,提出一种设计方法,用于在分析的载荷和边界条件下实际估算玻璃元件的屈曲强度。

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