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Experimental study of rock-sheds constructed with PE fibres and composite cushion against rockfall impacts

机译:PE纤维复合垫层棚防落石冲击试验研究。

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摘要

To improve the impact resistance of rock-sheds, polyethylene (PE) fibres and expandable polyethylene (EPE) foams are proposed for structural construction. With PE fibres added into the matrix, the ductility and the impact resistance ability of concrete can be enhanced. Moreover, to reduce the dead load and impact load, EPE foam is utilized to replace some sand layers, forming a composite cushion. A series of large-scale rockfall impact experiments were carried out on four prototype models. Under a low- and medium-impact energy, compared to the traditional sand cushion, the composite cushion was more favoured to reduce the impact loading and was more suitable to resist multiple impacts. With the addition of fibres, the integrity of the concrete matrix was improved. The fibre concrete had a better energy dissipation capacity than that of the plain concrete. In addition, more cracks occurred in the plain concrete. When subjected to high energy, the reinforced concrete model was damaged with a large deformation and many fragments. However, the maximum deformation of the PE fibre-reinforced concrete model was very small, and almost no spalling or fragments were found. These results indicate that when constructed using PE fibres and EPE foams, the capability to resist the impact loading of rock-sheds can be significantly improved.
机译:为了提高棚屋的抗冲击性,提出了用于结构构造的聚乙烯(PE)纤维和可膨胀聚乙烯(EPE)泡沫。通过将PE纤维添加到基体中,可以增强混凝土的延展性和抗冲击能力。此外,为减少静载荷和冲击载荷,利用EPE泡沫材料代替了一些砂层,形成了复合垫层。在四个原型模型上进行了一系列的大规模落石冲击试验。与传统的沙垫相比,在低和中等冲击能量下,复合垫更适合于减少冲击载荷,并且更适合抵抗多种冲击。通过添加纤维,改善了混凝土基体的完整性。纤维混凝土具有比普通混凝土更好的能量消散能力。另外,普通混凝土中出现更多的裂缝。当承受高能量时,钢筋混凝土模型被破坏,变形很大,碎片很多。但是,PE纤维混凝土模型的最大变形很小,几乎没有剥落或碎裂。这些结果表明,当使用PE纤维和EPE泡沫构造时,抗石棚冲击载荷的能力可以得到显着提高。

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