冻土的动力试验

V. Balandin, L. Meyer, S. Abdel-Malek
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摘要

研究坚硬可变形冲击体与冻土的接触相互作用规律具有重要的科学价值和应用价值。在解决这类问题时,数值方法被广泛使用。为了对冻土在动荷载作用下的行为进行数值模拟,有必要使用能够充分描述其在各种负温度、负湿度和负应变速率下行为的土介质模型。为了确定这些模型的参数,需要进行实验研究来确定土壤在低温下的动力特性。本文介绍了湿度为10%和18%时冻砂试样动态变形的试验研究结果。采用Kolsky方法进行了压缩实验。得到了冻砂在-18°С温度下,在400-2500 s-1范围内不同应变速率下的单轴应力条件下的变形曲线。建立了冻砂在单轴压缩下的强度随应变率的函数图。在研究的应变率范围内,不同湿度的试样的图是线性的。饱和水冻砂的最大应力高于10%湿冻砂的最大应力。随着应变速率的增加,饱和水砂的抗压强度比含水率为10%的砂的抗压强度增长更快,在应变速率为500 s-1左右时,冻结饱和水砂试样破坏时的应力是含水率为10%的冻结砂的1.5倍,在应变速率为2500 s-1时,其应力是冻结砂的3倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DYNAMIC TESTS OF FROZEN SAND SOILS
The study of the laws of contact interaction of hard and deformable impactors with frozen soils is of great scientific and applied value. In solving such problems, numerical methods are widely used. For numerically modeling the behavior of frozen soil under dynamic loading, it is necessary to use models of soil media that adequately describe their behavior at various negative temperatures, humidities and strain rates. To identify the parameters of these models, experimental studies are required for determining dynamic properties of soils at low temperatures. The paper presents the results of experimental studies of dynamic deformation of samples of frozen sand with humidities of 10% and 18%. Compression experiments were conducted using a stand implementing the Kolsky method. Deformation curves of frozen sand at a temperature of -18 °С were obtained under uniaxial stress conditions at various strain rates in the range of 400-2500 s-1. Diagrams of strength of frozen sand under uniaxial compression as a function of strain rate are constructed. The diagrams are linear for samples of different humidity in the studied range of strain rates. Maximum stresses in frozen water-saturated sand are higher than those in frozen sand of 10% humidity. With increasing strain rate, compressive strength of water-saturated sand grows faster than that of sand with a moisture content of 10%: at a strain rate of about 500 s-1, the stresses in frozen water-saturated sand, at which the samples fail, are 1.5 times higher than those in the frozen sand with a moisture content of 10%, and at a strain rate of 2500 s-1 they are 3 times as high.
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