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FRACTURE OF CONCRETE CONTAINING CRUMB RUBBER

机译:含胶混凝土的断裂

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摘要

Every year, colossal amounts of used and non-biodegradable rubber tyres are accumulated in the world. Experience shows that the most efficient way to increase the concrete fracture energy Gp- (N/m) is to use metal or polypropylene fibres. The optimal content of fibre increases concrete resistance to stress (especially tensile stress under bending force). Concrete fracture is not brittle; concrete continues deforming after maximum stresses and is able to resist certain stresses, there is no abrupt decrease in loading. The research has proved that crumb rubber can be used in concretes as an alternative to metal and polypropylene fibres. The investigation has found that rubber waste additives, through their specific properties can partly take up tensile stresses in concrete and make the concrete fracture more plastic; besides, such concrete requires a significantly higher fracture energy and concrete samples can withstand much higher residual strength at 500 μm crack mouth opening displacement (CMOD) and deflection.
机译:每年,世界上累积了大量的废旧和不可生物降解的橡胶轮胎。经验表明,提高混凝土断裂能Gp-(N / m)的最有效方法是使用金属或聚丙烯纤维。最佳的纤维含量可以提高混凝土的抗应力能力(尤其是在弯曲力作用下的拉应力)。混凝土断裂不脆;混凝土在最大应力后会继续变形,并且能够抵抗某些应力,因此荷载不会突然降低。研究证明,碎屑橡胶可用于混凝土中,以替代金属和聚丙烯纤维。调查发现,橡胶废料添加剂的特殊性能可以部分吸收混凝土中的拉应力,并使混凝土的断裂更具塑性。此外,此类混凝土需要更高的断裂能,并且混凝土样品在500μm裂纹口张开位移(CMOD)和挠度下可以承受更高的残余强度。

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