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THE DYNAMIC SHEAR MODULUS AND DAMPING RATIO OF CLAY NANOCOMPOSITES

机译:黏土纳米复合材料的动态剪切模量和阻尼比

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摘要

Clay soils are very useful as liners in geotechnical structures such as landfill sites, dams, water channels, etc. Swelling is a common problem in clay liners, however. To better understand swelling properties, in the present study clay nanocomposites were produced by means of the sol gel method, using a hydrophobic clay, polymers (locust bean gum, latex, glycerine, vinyl acrylic copolymer), and rubber powder. The study focused on the swelling and dynamic properties (secant shear modulus and damping ratio) of the clay nanocomposites researched experimentally in laboratory conditions. The dynamic tests were conducted on samples compacted using two different compaction energy levels. The test results were compared with those of natural clay and hydrophobic organo-clay. The test results revealed that the damping ratios and secant shear modulus of clay nanocomposites without rubber (CNC) and with rubber (CNCr) that were compacted with both the E1 and E2 energy levels were increased and decreased, respectively. In addition, with increasing percentage of vinyl acrylic in nanoclay composites, the secant shear modulus values were decreased and damping ratio values were increased. Consequently, the test results found that the swelling and dynamic properties of clay nanocomposites can be optimized in order to attenuate the negative effects of dynamic loads on clay liners.
机译:粘土在土工结构(如垃圾填埋场,水坝,水道等)中作为衬砌非常有用。然而,膨胀是粘土衬砌的常见问题。为了更好地理解溶胀性能,在本研究中,使用疏水性粘土,聚合物(刺槐豆胶,乳胶,甘油,乙烯基丙烯酸共聚物)和橡胶粉,通过溶胶凝胶法制备了粘土纳米复合材料。该研究的重点是在实验室条件下通过实验研究的粘土纳米复合材料的溶胀和动态特性(正割剪切模量和阻尼比)。对使用两种不同压实能级压实的样品进行了动态测试。将测试结果与天然粘土和疏水性有机粘土进行了比较。试验结果表明,用E1和E2能级压实的无橡胶(CNC)和有橡胶(CNCr)的粘土纳米复合材料的阻尼比和割线剪切模量分别增大和减小。另外,随着乙烯基丙烯酸在纳米粘土复合材料中的百分比增加,正割剪切模量值减小,阻尼比值增加。因此,测试结果发现,可以优化粘土纳米复合材料的溶胀和动态特性,以减轻动态载荷对粘土衬里的负面影响。

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