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Large-scale rockfall impact experiments on a RC rock-shed with a newly proposed cushion layer composed of sand and EPE

机译:RC岩棚上新提出的由沙子和EPE组成的缓冲层的大型落石冲击试验

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摘要

Rock-sheds are widely used to protect roads in mountainous areas. Generally, a soil cushion is placed on the rock-shed slab to distribute impact forces and absorb energy. However, thicker soil cushions lead to high dead loads and construction costs. This paper proposes a new cushion layer that includes both sand and expandable polyethylene (EPE), with the aim of reducing dead load and improving durability. Several studies are conducted. First, a newly proposed cushion layer composed of a foam material (expanded polystyrene (EPS) or EPE) and granular material (soil or sand) is introduced. The reasons for including EPE are explained. Then, uniaxial compression tests are conducted to elucidate and compare the compression performance of EPS and EPE, particularly the resilience performance. Finally, large-scale rockfall impact experiments are carried out on a reinforced concrete rock-shed with three types of cushion layers: sand, sand-EPS, or sand-EPE. The analysis and comparison of the experimental results suggest that sand-EPE is the optimal cushion layer to resist rockfall impact and protect rock-shed structures.
机译:岩石棚被广泛用于保护山区的道路。通常,在碎石板上放置一个土壤垫,以分配冲击力并吸收能量。然而,较厚的土壤垫层导致高的静载和建筑成本。本文提出了一种既包含沙子又包含可膨胀聚乙烯(EPE)的新型缓冲层,目的是减少静载并提高耐用性。进行了一些研究。首先,介绍了一种新提出的由泡沫材料(发泡聚苯乙烯(EPS)或EPE)和粒状材料(土壤或沙子)组成的缓冲层。解释了包括EPE的原因。然后,进行单轴压缩测试以阐明和比较EPS和EPE的压缩性能,尤其是回弹性。最后,在具有三种类型的垫层的钢筋混凝土碎石棚上进行了大规模的落石冲击试验:沙土,EPS-砂土或EPE砂土。实验结果的分析和比较表明,砂-EPE是抵抗落石冲击和保护落石结构的最佳缓冲层。

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