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Experimental Determination of Shear Strength Properties of Lightweight Expanded Clay Aggregates Using Direct Shear and Triaxial Tests

机译:使用直接剪切和三轴试验通过实验确定轻质膨胀粘土骨料的抗剪强度特性

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Artificial lightweight aggregates have a wide range of applications in industry and engineering. Nowadays, the usage of this material in geotechnical activities, especially as backfill in retaining walls has been growing due to the specific characteristics which make it a competent alternative to the conventional geotechnical materials. In practice, a material with lower weight but higher shear strength parameters would be ideal as backfill behind retaining walls because of the important roles that these parameters play in decreasing the overall active lateral earth pressure. In this study, two types of Light Expanded Clay Aggregates (LECA) produced in the Leca factory are investigated. LECA is made in a rotary kiln by heating natural clay at different temperatures up to 1200 °C making quasi-spherical aggregates with different sizes ranged from 0 to 25 mm. The loose bulk density of these aggregates is between 300 and 700 kN/m3. The purpose of this research is to determine the stress-strain behavior, shear strength parameters, and the energy absorption of LECA materials. Direct shear tests were conducted at five normal stresses of 25, 50, 75, 100, and 200 kPa. In addition, conventional triaxial compression tests were operated at confining pressures of 50, 100, and 200 kPa to examine stress-strain behavior. The experimental results show a high internal angle of friction and even a considerable amount of nominal cohesion despite the granular structure of LECA. These desirable properties along with the intrinsic low density of these aggregates make LECA as a very proper material in geotechnical applications. Furthermore, the results demonstrate that lightweight aggregates may have high energy absorption that is excellent alternative material in seismic isolations.
机译:人造轻骨料在工业和工程领域具有广泛的应用。如今,由于其特殊的特性,这种材料在岩土工程中的用途,尤其是在挡土墙中的回填,已经越来越多,这使其成为常规岩土材料的有效替代品。在实践中,重量轻但抗剪强度参数高的材料将非常适合作为挡土墙后的回填,因为这些参数在降低总体有效侧向土压力方面起着重要作用。在这项研究中,对Leca工厂生产的两种轻质粘土集料(LECA)进行了研究。 LECA是在回转窑中通过在高达1200°C的不同温度下加热天然粘土而制成的,其大小为0至25 mm的准球形骨料。这些骨料的松散堆积密度在300至700 kN / m3之间。这项研究的目的是确定LECA材料的应力应变行为,抗剪强度参数和能量吸收。在25、50、75、100和200 kPa的五个法向应力下进行直接剪切测试。另外,常规的三轴压缩试验是在50、100和200 kPa的围压下进行的,以检查应力应变行为。实验结果表明,尽管LECA具有颗粒状结构,但内摩擦角仍然很高,甚至具有相当大的名义内聚力。这些理想的特性以及这些骨料的固有低密度使得LECA成为岩土工程应用中非常合适的材料。此外,结果表明,轻质骨料可能具有较高的能量吸收率,是地震隔离中极好的替代材料。

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