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Protective effect of graded density aluminium foam on RC slab under blast loading - An experimental study

机译:爆炸荷载下梯度泡沫铝对RC板坯的保护作用-实验研究

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摘要

In recent decades, bomb incidents have significantly increased due to various blast accidents and growing terrorist threats. Therefore, the protection of important infrastructures against blast loading has never been more important. Aluminium foam, which is often used as a protective layer to absorb impact energy, has demonstrated its ability to mitigate blast effect in several studies. The outstanding energy absorption capacity of aluminium foam is mainly resulted from its long-lasting plateau-stress region which allows it to only transmit a small stress (which is equal to the plateau stress) to the protected structure while absorbing the rest by self-compaction. For aluminium foam that is manufactured by the same method, the overall energy absorbing capacity per unit volume increases proportionally with mass density; however, the plateau stress also increases with mass density which means a larger stress would be transmitted to the protected structure. Therefore, there is a trade-off between the mass density and the transmitted stress. In order to increase the overall energy absorbing capacity of aluminium foam while keeping the transmitted stress at a reasonably low magnitude, the idea of density-graded foam has been proposed which is simply a foam structure with various densities along its thickness. In this paper, the effectiveness of density-graded foams has been investigated. A number of static compressive tests are conducted on different types of aluminium foams including aluminium foams with uniform density, density-graded aluminium foams with linear gradient as well as density-graded aluminium foams with unordered gradient. In addition, a blast test program is also carried out to investigate the blast mitigation effect of graded density foams on reinforced concrete (RC) slabs. (c) 2016 Elsevier Ltd. All rights reserved.
机译:在最近的几十年中,由于各种爆炸事故和恐怖分子威胁的增加,炸弹事件显着增加。因此,保护​​重要基础设施免受爆炸冲击从未像现在这样重要。泡沫铝通常用作吸收冲击能量的保护层,在多项研究中已证明其具有减轻爆炸作用的能力。泡沫铝杰出的能量吸收能力主要是由于其持久的高原应力区域,该区域允许它仅向受保护的结构传递较小的应力(等于高原应力),而通过自压缩吸收其余的应力。对于用相同方法制造的泡沫铝,每单位体积的总能量吸收能力与质量密度成比例地增加;但是,平台应力也会随着质量密度而增加,这意味着更大的应力会传递到受保护的结构上。因此,在质量密度和传递的应力之间需要权衡。为了增加泡沫铝的整体能量吸收能力,同时将传递应力保持在合理的低值,提出了密度梯度泡沫的思想,该思想只是沿其厚度具有各种密度的泡沫结构。在本文中,已经研究了密度梯度泡沫的有效性。对不同类型的铝泡沫进行了许多静态压缩测试,包括密度均匀的铝泡沫,线性梯度的密度梯度铝泡沫和无序梯度的密度梯度铝泡沫。此外,还进行了爆炸测试程序,以研究梯度密度泡沫对钢筋混凝土(RC)楼板的爆炸缓解效果。 (c)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials 》 |2016年第may15期| 209-222| 共14页
  • 作者单位

    Univ Adelaide, Sch Civil Environm & Min Engn, Adelaide, SA 5005, Australia;

    TCU UA, Joint Res Ctr Disaster Prevent & Mitigat, Adelaide, SA, Australia|Univ Technol Sydney, Sch Civil & Environm Engn, Ctr Built Infrastruct Res, Sydney, NSW 2007, Australia;

    TCU UA, Joint Res Ctr Disaster Prevent & Mitigat, Adelaide, SA, Australia;

    Shichuan Yuantaida Nonferrous Met Mat Co LTD, Huangshi, Sichuan, Peoples R 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

    Density-graded aluminium foam; Static test; Blast test;

    机译:密度分级的泡沫铝;静态测试;爆炸测试;

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