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Effects of stress conditions on rheological properties of granular soil in large triaxial rheology laboratory tests

机译:大型三轴流变试验中应力条件对颗粒状土壤流变特性的影响

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In order to study the rheologicai properties of red stone granular soil, a series of rheological experiments were executed on large tri-axial rheological apparatus. Under 100, 200 and 300 kPa confining stress conditions, the rheologieal tests were carried out.These experiment results showed that the stress conditions, especially the stress level were the critical influencing factors of the rheological deformation properties. Under the low stress level (S=0.1), the granular soil showed the elastic properties, and there was no obvious rheological deformation. Under the middle stress level (0.2<S≤0.6), creep curves showed the linear viscoelastic rheoiogical properties. However, under the high stress level (S>0.8) creep curves showed the non-linear viscous plastic rheological properties. Especially, under the stress level of S=1.0, the accelerated rheological phase of creep curves occurred at early time with a trend of failure. The stress level had obvious effects on the final rheological deformation of the soil sample, and the final rheological deformation increments nonlinearly increased with stress level. The final rheologieal deformation increment and step was little under low stress level, while it became large under high stress level, which showed the nonlinenrly rheological properties of the granular soil. The confining pressure also had direct effects on final rheological deformation, and the final rheological deformation linearly increased with confining pressure increments.
机译:为了研究红石颗粒土壤的流变特性,在大型三轴流变仪上进行了一系列流变实验。在100 kPa,200 kPa和300 kPa约束应力条件下,进行了流变学测试。实验结果表明,应力条件,特别是应力水平是影响流变变形性能的关键因素。在低应力水平(S = 0.1)下,粒状土表现出弹性,没有明显的流变变形。在中等应力水平(0.2 <S≤0.6)下,蠕变曲线显示出线性的粘弹性流变特性。然而,在高应力水平(S> 0.8)下,蠕变曲线显示出非线性粘性塑性流变特性。特别是在应力为S = 1.0的条件下,蠕变曲线的加速流变阶段在早期出现,并具有破坏的趋势。应力水平对土壤样品的最终流变变形具有明显的影响,并且最终流变变形增量随应力水平非线性增加。在低应力下最终的流变变形增量和阶跃很小,而在高应力下最终变大,这表明了颗粒状土壤的非线性流变特性。围压对最终流变变形也有直接影响,最终流变变形随围压增加而线性增加。

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