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Multiple Dissipative Devices for Blast-Resisting Cable-Supported Glazing Facades

机译:电缆支撑玻璃幕墙的防爆耗能装置

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摘要

The paper analyzes the structural response of a high-level air blast loaded cable-supported facade. Since the glass panels and the cables present a typical brittle behavior and are subjected to elevated tensile stresses when a high-level explosion occurs, multiple dissipative devices are simultaneously introduced in the conventional glazing system to mitigate the maximum effects of the design blast wave. Dynamic analyses are performed using a sophisticated FE-model to describe accurately the response of the facade equipped by dissipative devices. Based on numerical results of previous contributions, viscoelastic spider connectors (VESCs) are introduced in the points of connection between glass panels and pretensioned cables, to replace "rigid" spider connectors commonly used in practice. At the same time, rigid-plastic frictional devices (RPDs) are installed at the top of the bearing cables to mitigate furthermore the bracing system. As a result, due to the combined use of VESCs and RPDs opportunely calibrated, the maximum tensile stresses in the glass panels and in the cables appear strongly reduced. In addition, the proposed devices do not trouble the aesthetics of such transparent structural systems. At last, simple design rules are presented to predict the response of cable-supported facades subjected to high-level dynamic loads and to preliminary estimate the mechanical parameters of combined VESCs and RPDs.
机译:本文分析了高空爆炸荷载下的电缆支撑立面的结构响应。由于玻璃面板和电缆表现出典型的脆性,并且在发生高水平爆炸时会承受较高的拉伸应力,因此在常规玻璃系统中同时引入了多个耗散装置,以减轻设计爆炸波的最大影响。使用复杂的有限元模型进行动态分析,以准确描述耗散设备配备的外墙的响应。根据先前贡献的数值结果,在玻璃面板和预紧电缆之间的连接点引入了粘弹性星形连接器(VESC),以代替实际中通常使用的“刚性”星形连接器。同时,在轴承电缆的顶部安装了刚性塑料摩擦装置(RPD),以进一步减轻支撑系统的负担。结果,由于适当地校准了VESC和RPD的组合使用,玻璃面板和电缆中的最大拉应力似乎大大降低了。另外,所提出的装置不会影响这种透明结构系统的美观。最后,提出了简单的设计规则,以预测承受高水平动态载荷的电缆支撑外墙的响应,并初步估计组合的VESC和RPD的机械参数。

著录项

  • 来源
    《Modelling and simulation in engineering》 |2013年第2013期|964910.1-964910.13|共13页
  • 作者

    Claudio Amadio; Chiara Bedon;

  • 作者单位

    Department of Engineering and Architecture, University of Trieste, Piazzale Europa 1, 34127 Trieste, Italy;

    Department of Engineering and Architecture, University of Trieste, Piazzale Europa 1, 34127 Trieste, Italy;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 01:01:03

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