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Research on the Use of FRP for Critical Load-Bearing Infrastructure in Conflict Zones

机译:FRP在冲突地区关键承重基础设施中的应用研究

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Research into the use of fiber-reinforced polymers (FRPs) in structures at the Royal Military College of Canada (RMC) during the past two decades has largely focused on two important military engineering goals-mobility and survivability. FRP research in the area of mobility has included the strengthening and repair of reinforced concrete beams and slabs and the development of portable lightweight bridges suitable for most wheeled and tracked vehicles. With respect to survivability, a particular interest is in the use of FRPs to enhance the blast resistance of structural columns and beams. Such research may be equally pertinent to improving the blast resistance of a broad range of critical domestic infrastructure worldwide, given both the increasing concerns about terrorist acts and the desire as well to improve resistance to accidental explosion. This paper will report on the experimental work of two of the most recent FRP research projects carried out at the RMC in support of military objectives-the development of a lightweight portable glass FRP bridge and the use of FRP to strengthen reinforced concrete structural columns against blast. A full-sized FRP box beam was constructed and tested in the laboratory and 28 half-scale reinforced concrete columns, some strengthened with either steel reinforced polymer (SRP) or with FRP, were tested in the field under blast load. From this research, it can be seen that FRP as a structural material offers significant advantages to military forces working in conflict zones, whether for traditional strengthening of damaged or understrength structures, lightweight portable bridge options, or as a means of strengthening structures against blast effects.
机译:在过去的二十年中,加拿大皇家军事学院(RMC)对结构中使用纤维增强聚合物(FRP)的研究主要集中在两个重要的军事工程目标上,即机动性和生存能力。 FRP在交通领域的研究包括加强和维修钢筋混凝土梁和楼板,以及开发适用于大多数轮式和履带车辆的便携式轻型桥梁。关于生存性,特别关注的是使用FRP来增强结构柱和梁的抗爆炸性。鉴于对恐怖行为的关注日益增加,并且也有提高对意外爆炸的抵抗力的愿望,此类研究可能与提高全球范围内各种关键的家庭基础设施的爆炸抵抗力同样相关。本文将报告在RMC上为支持军事目标而进行的两个最新FRP研究项目的实验工作-开发轻型便携式玻璃FRP桥以及使用FRP加固钢筋混凝土结构柱以防爆炸。在实验室中建造并测试了全尺寸的FRP箱形梁,并在爆炸载荷下在现场测试了28个半比例钢筋混凝土柱,其中一些采用钢增强聚合物(SRP)或FRP进行了增强。从这项研究中可以看出,玻璃钢作为结构材料为在冲突地区工作的军队提供了显着的优势,无论是传统加固受损或强度不足的结构,轻巧的便携式桥梁选项,还是加固结构以抵抗爆炸影响的手段。

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