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Blast resistance characteristics of concrete with different types of fibre reinforcement

机译:不同类型纤维增强混凝土的抗爆炸特性

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This paper summarizes the results of the development of advanced fibre-reinforced concrete intended for explosion-resistant applications. Experimental research was carried out with the aim of contributing to understanding the effect of different types of reinforcement on the behaviour of high-performance fibre-reinforced concrete subjected to a blast load. The fine-grained concrete matrix was reinforced by various types of dispersed fibre - metallic, carbon, mineral and polymer - in different lengths (6-55 mm) and combinations, while the volume content (3%) of fibres was kept constant. Physico-mechanical and explosion tests were performed on prismatic and slab-shaped specimens and the effect of different kinds of reinforcement on the blast resistance and mechanical performance of the concrete samples was evaluated. The accelerations of the specimens within the blast load were ascertained. The material characteristics and explosion test data obtained were used to create a finite element model in LS-DYNA. The numerical and experimental investigations resulted in the design of concrete elements for population protection which are able to resist an explosion defined by the weight and placement of the charge. The resistance of the newly designed concrete element was confirmed by a field blast test.
机译:本文总结了用于防爆用途的高级纤维增强混凝土的开发结果。进行实验研究的目的是有助于理解不同类型的增强对承受爆炸载荷的高性能纤维增强混凝土性能的影响。细粒混凝土基体由各种类型的分散纤维(金属,碳,矿物和聚合物)以不同的长度(6-55毫米)及其组合进行增强,而纤维的体积含量(3%)保持恒定。对棱柱形和板状样品进行了物理力学和爆炸测试,并评估了不同种类的增强对混凝土样品的抗爆炸性和机械性能的影响。确定了爆炸载荷内的样品加速度。所获得的材料特性和爆炸测试数据用于在LS-DYNA中创建有限元模型。数值和实验研究得出了用于人口保护的混凝土构件的设计,该构件能够抵抗由炸药的重量和位置决定的爆炸。通过现场爆破测试证实了新设计的混凝土构件的抗力。

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