Potentials and Limits of Simplified Models for Linearly Restrained Glass Balustrades under Static Loads and Impact

E. Rizzi, Chiara Bedon, A. Bez, C. Amadio
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Abstract

Glass balustrades are designed to prevent large deflections and high stress peaks under conventional lateral loads. In practice, linear restraints are generally described in the form of ideal linear clamps for glass, to replace the actual geometrical and mechanical properties of restraint components. This means that strong simplifications are introduced in place of multiple details and components expected to offer local flexibility and prevent premature stress peaks in glass. In this paper, attention is given to linear restraints that are commonly described in terms of “clamp” boundaries for glass panels under lateral loads. The use of simplified mechanical models to characterize the actual stiffness and linear restraints and components is addressed, with the support of refined Finite Element numerical models and literature experimental data for balustrades under twin-tyre impact.
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静态载荷与冲击作用下线性约束玻璃栏杆简化模型的潜力与极限
玻璃栏杆的设计是为了防止在常规横向载荷下的大挠度和高应力峰值。在实践中,线性约束通常以理想的玻璃线性夹具的形式描述,以取代约束部件的实际几何和机械性能。这意味着引入了强大的简化,以取代多个细节和组件,以期提供局部灵活性,并防止玻璃过早出现应力峰值。在本文中,关注的是线性约束,通常描述为“夹紧”边界下的玻璃面板在横向荷载。在双轮胎碰撞下栏杆的精细化有限元数值模型和文献实验数据的支持下,解决了使用简化力学模型来表征实际刚度和线性约束和组件的问题。
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