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Influence of structural sealant joints on the blast performance of laminated glass panels

机译:结构密封缝对夹层玻璃板爆炸性能的影响

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摘要

This paper investigates the influence of structural sealant joints on the blast performance of laminated glass (LG) panels, using a comprehensive numerical procedure. A parametric study was carried out by varying the width, thickness and the Young’s modulus (E) of the structural silicone sealant joints and the behavior of the LG panel was studied under two different blast loads. Results show that these parameters influence the blast response of LG panels, especially under the higher blast load. Sealant joints that are thicker, have smaller widths and lower E values increase the flexibility at the supports and hence increase the energy absorption of the LG panel while reducing the support reactions. Results also confirmed that sealant joints designed according to current standards perform well under blast loads. Modeling techniques presented in this paper could be used to complement and supplement the guidance in existing design standards. The new information generated in this paper will contribute towards safer and more economical designs of entire facade systems including window glazing, frames and supporting structures.
机译:本文使用综合的数值程序研究了结构密封胶接缝对夹层玻璃(LG)面板爆炸性能的影响。通过改变结构硅酮密封胶接缝的宽度,厚度和杨氏模量(E)进行了参数研究,并研究了在两种不同爆炸载荷下LG面板的性能。结果表明,这些参数影响LG面板的爆炸响应,尤其是在较高爆炸载荷下。较厚的密封接头,具有较小的宽度和较低的E值会增加支撑件的柔韧性,从而增加LG面板的能量吸收,同时减少支撑件的反应。结果还证实,根据当前标准设计的密封接头在爆炸载荷下表现良好。本文介绍的建模技术可用于补充和补充现有设计标准中的指导。本文中产生的新信息将有助于整个立面系统(包括窗户玻璃,框架和支撑结构)的设计更安全,更经济。

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