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Determination of static and dynamic behavior of recycled materials for highways

机译:公路再生材料静态和动态行为的测定

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Utilization of wastes in highway applications may be feasible with a better understanding of waste behavior under static and dynamic loading. Waste materials such as tires, plastics, glass, fly ash, etc. may be used in highway construction potentially saving waste disposal costs. Physical, mechanical, and dynamic properties of waste materials are required for a successful design, which can be determined using techniques available in geotechnical engineering. Construction of highway fills in earthquake prone regions requires knowledge of dynamic behavior of the waste materials. Due to its low unit weight, high porosity, and interlocking behavior, waste materials response to earthquake loads are different from those of natural soil. In this study, large-scale direct shear tests and dynamic triaxial tests were carried out for two potential wastes: tire buffings and manufactured fly ash pellet aggregates. Tire buffings added to sand altered the deformation behavior of the mixture by stiffening the material at low strains and softening the mixture at large strains. The shear modulus and damping values of sand-tire buffings mixtures were higher than those measured for tire buffings only. Processing fly ash to manufacture pellet aggregates resulted in high performance fill material with an internal friction angle of 46degrees and with unit weight of 10.5 kN/m(3). The shear modulus values of pellet aggregates were slightly lower than those of tire buffings added sand, and the damping values were as high as those for tire buffings-sand mixture. (C) 2004 Elsevier B.V. All rights reserved.
机译:更好地了解静态和动态载荷下的废物行为,在公路应用中利用废物可能是可行的。诸如轮胎,塑料,玻璃,粉煤灰等废料可用于高速公路建设,从而可能节省废料处理成本。成功设计需要废料的物理,机械和动态特性,可以使用岩土工程中可用的技术来确定。在地震多发地区的高速公路填土建设需要了解废料的动态行为。由于其低的单位重量,高的孔隙率和互锁的特性,废料对地震载荷的反应不同于天然土壤。在这项研究中,对两种潜在的废物进行了大规模的直接剪切试验和动态三轴试验:轮胎抛光和人造粉煤灰颗粒聚集体。通过在低应变下使材料变硬并在大应变下使混合物软化,添加到沙子上的轮胎抛光剂改变了混合物的变形行为。沙胎抛光剂混合物的剪切模量和阻尼值高于仅对轮胎抛光剂的测量值。处理粉煤灰以制造粒料骨料产生了高性能填充材料,其内部摩擦角为46度,单位重量为10.5 kN / m(3)。粒料骨料的剪切模量值比添加砂的轮胎抛光剂的剪切模量值略低,并且阻尼值与轮胎抛光剂-砂混合物的阻尼值一样高。 (C)2004 Elsevier B.V.保留所有权利。

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