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Experimental investigation of monolithic tempered glass fragment characteristics subjected to blast loads

机译:爆炸载荷作用下整体钢化玻璃碎片特性的实验研究

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摘要

A series of field blasting tests of glass windows to blast loadings have been recently conducted. This is the second paper to report the testing data on monolithic tempered glass windows. While the first paper reports the glass panel response and failure modes, the current paper concentrates on the glass fragments induced by the blast loadings. Thermally tempered glass has been often adopted for monolithic windows to reduce ejecting fragment hazards after window fracture. However, previous blast tests conducted on monolithic tempered glass reported that in addition to small cubic fragments the shattered glass panes could break into large and jagged fragments similar to the cases in annealed glass which poses much more debris threats than expected. A thorough study on tempered glass fragments produced by air blast pressure is therefore necessary for better protection of human safety. In this paper, fragment characteristics of monolithic tempered glass windows observed in blasting tests are analyzed and presented. 1.5 m × 1.2 m monolithic panes of two commonly used thicknesses, i.e. 6 mm and 10 mm, fully clamped onto the opening of an enclosed RC frame were tested with 5-10 kg TNT charge detonated at 4.5-12.3 m stand-off distances. Glass fragment mass and splash distributions both in front of and behind the windows were evaluated with respect to reflected pressure and glass specification. Fragment size and shape were also analyzed. High-speed cameras were used to monitor glass window fracture processes. Fragment velocities were determined by post-processing the high-speed camera images. Fragment ejecting velocities were evaluated with respect to the reflected impulse. Negative pressure was found to significantly influence the fragment ejecting velocity and fragment splash distributions.
机译:最近已经进行了一系列玻璃窗的现场爆破试验,以爆炸载荷。这是第二篇报告整体钢化玻璃窗测试数据的论文。第一篇论文报告了玻璃面板的响应和破坏模式,而当前论文则集中在爆炸载荷引起的玻璃碎片上。整体式窗户通常采用热钢化玻璃,以减少窗户破裂后弹出碎片的危害。但是,先前对整块钢化玻璃进行的爆炸测试报告说,除了小立方碎片之外,破碎的玻璃板可能会破碎成大的锯齿状碎片,类似于退火玻璃中的情况,这比预期的要多得多。因此,有必要对通过鼓风压力产生的钢化玻璃碎片进行深入研究,以更好地保护人类安全。本文对爆破试验中观察到的整体钢化玻璃窗的碎片特性进行了分析和介绍。用5-10 kg的TNT装药以4.5-12.3 m的对距距离引爆,测试1.5mm×1.2m的两种常用厚度的整体式玻璃板,即厚度为6mm和10mm,它们完全夹紧在封闭的RC框架的开口上。就反射压力和玻璃规格评估了玻璃在前后玻璃碎片的质量和飞溅的分布。还分析了片段的大小和形状。高速摄像机用于监视玻璃窗的破裂过程。碎片速度是通过对高速相机图像进行后处理来确定的。相对于反射脉冲评估碎片喷射速度。发现负压会显着影响碎片的喷射速度和碎片飞溅的分布。

著录项

  • 来源
    《Engineering Structures》 |2014年第15期|259-275|共17页
  • 作者单位

    School of Civil, Environmental and Mining Engineering, The University of Western Australia, 35 Stirling Highway, Crawley WA 6009, Australia;

    Tianjin University and Curtin University Joint Research Center of Structural Monitoring and Protection, School of Civil and Mechanical Engineering, Curtin University, Kent St., Bentley WA 6102, Australia;

    The State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tempered glass; Monolithic glazing; Free field blast; Fragment;

    机译:钢化玻璃;整体玻璃自由场爆炸;分段;

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