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Experimental and numerical study of rubber concrete slabs with steel reinforcement under close-in blast loading

机译:爆炸荷载作用下钢筋混凝土橡胶板的试验与数值研究

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We conducted explosion field tests on rubber concrete slabs with steel reinforcement, including four kinds of concretes with different mix proportions of volume fractions of rubber particles (0%, 10%, 30%, and 50%, termed NC, RC10, RC30, and RC50, respectively). In addition, we compared the measured over-pressure at the center of a slab with some empirical models to verify the accuracy our model. Field testing results showed that the tensile zone damage of rubber concrete slabs is smaller than that of normal concrete slabs under large explosive charges. Additionally, we validated a numerical simulation employing Multi-Material ALE and Lagrangian algorithms using the data from field experiments and employed it to further study the deformation process during the field test. Finally, we showed that rubber concrete slabs with steel reinforcements are practical structures for blast resistance, especially when subjected to a large energy detonation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们对带有钢筋的橡胶混凝土板进行了爆炸现场测试,包括四种橡胶颗粒体积分数(0%,10%,30%和50%,分别为NC,RC10,RC30和RC50)。另外,我们将在平板中心测得的过压与一些经验模型进行了比较,以验证我们模型的准确性。现场测试结果表明,在爆炸载荷较大的情况下,橡胶混凝土板的拉伸区损伤小于普通混凝土板。此外,我们使用来自现场实验的数据验证了使用Multi-Material ALE和Lagrangian算法进行的数值模拟,并将其用于进一步研究现场测试期间的变形过程。最后,我们表明,带有钢筋的橡胶混凝土板是抗爆炸的实用结构,特别是在承受大能量爆炸时。 (C)2018 Elsevier Ltd.保留所有权利。

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