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Dynamic Properties of Lightweight Cellular Concrete for Geotechnical Applications

机译:土工应用中轻质蜂窝混凝土的动力特性

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Lightweight cellular concrete (LCC) materials have been used in various civil engineering applications for several decades. In this study, the dynamic behavior of LCC materials was evaluated for possible geotechnical applications, such as mechanically stabilized earth (MSE) retaining walls. Lightweight cellular concrete materials having four different unit weights were subjected to various amplitudes of sinusoidal waves at effective normal stresses ranging from 25 to 350 kPa. Results from this study show that the effective normal stress influenced the shear strength and stiffness more than the unit weight of the LCC materials. The backbone curves could be represented with a hyperbolic function, which can be developed for a known effective normal stress using the equations proposed in this paper. The maximum shear moduli of the LCC materials increased with a decrease in the unit weight and an increase in the effective normal stress. Likewise, the rate of reduction in normalized shear modulus (G/G_(max)) with strain also decreased with an increase in effective normal stress applied during seismic loading. Moreover, the damping ratio decreased with an increase in shear strain up to certain shear strain, which ranged from 0.25 to 0.35% for effective normal stresses of 25 and 350 kPa, respectively, and increased with shear strain after that transitional shear strain. The damping ratio of each type of LCC material tested was similar at the highest shear strain, i.e., 0.5% at a given effective normal stress. The results from this study can be used to evaluate the shear strength and deformation of the LCC materials in various geotechnical projects, such as in the backfill of MSE walls.
机译:轻质蜂窝混凝土(LCC)材料已经在各种土木工程应用中使用了几十年。在这项研究中,评估了LCC材料的动态性能,以评估可能的岩土工程应用,例如机械稳定土(MSE)挡土墙。具有四种不同单位重量的轻质多孔混凝土材料在有效法向应力范围从25到350 kPa的范围内经受正弦波的各种振幅。这项研究的结果表明,有效的法向应力对剪切强度和刚度的影响大于LCC材料的单位重量。骨干曲线可以用双曲线函数表示,可以使用本文提出的公式针对已知的有效法向应力进行开发。 LCC材料的最大剪切模量随单位重量的减少和有效法向应力的增加而增加。同样,归一化剪切模量(G / G_(max))随应变的减小率也随地震荷载期间施加的有效法向应力的增加而减小。此外,阻尼比随着剪切应变的增加而减小,直至达到一定的剪切应变,对于25和350 kPa的有效法向应力,阻尼比分别在0.25至0.35%的范围内,并且在该过渡剪切应变之后随剪切应变的增加而增大。在最高剪切应变下,每种测试的LCC材料的阻尼比都相似,即在给定的有效法向应力下的阻尼比为0.5%。这项研究的结果可用于评估各种岩土工程(例如MSE墙的回填)中LCC材料的抗剪强度和变形。

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  • 来源
    《Journal of materials in civil engineering》 |2018年第2期|04017271.1-04017271.10|共10页
  • 作者单位

    Dept. of Civil and Environmental Engineering, California State Univ., Fullerton, 800 N. State College Blvd., E-419, Fullerton, CA 92834;

    Dept. of Civil and Environmental Engineering, California State Univ., Fullerton, 800 N. State College Blvd., E-318, Fullerton, CA 92384;

    Cell-Crete Corporation, 135 E. Railroad Ave., Monrovia, CA 91016;

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