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Combined Effect of Compaction Methods and Loading Conditions on the Deformation Behaviour of Unbound Granular Material

机译:压实方法和装载条件对未结粒状物质变形行为的综合作用

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Unbound granular material is an important construction material that is used for flexible pavement. As one of the most important indices used for describing the properties of unbound granular material, the deformation characteristic is significantly influenced by the compaction method used. However, the effects of the compaction method on the deformation behaviour are neglected in the existing studies. Hence, we investigate the deformation characteristics of unbound granular material produced by the vertical vibration compaction method (VVCM) and the modified Proctor compaction method (MPCM) via repeated triaxial load tests and reveal the effect of loading conditions and aggregate gradations. The results show that (a) the deformation of unbound granular material decreases as the stress level and confining pressure are increased; (b) the deformation resistance of unbound granular material produced by the VVCM is superior to that produced by the MPCM; (c) the difference of deformation resistance arising between using the VVCM and MPCM decreases as confining pressure increases and is not significant with changes in the stress level; (d) the extent of various factors on deformation characteristics from greatest to least is as follows: stress level??aggregate gradation??compaction method??confining pressure; and (e) increasing the content of coarse aggregates is conducive to enhancing the deformation resistance of unbound granular material, particularly for the VVCM. Finally, a simple approach for modelling and predicting deformation is established.
机译:未结合的颗粒材料是一种用于柔性路面的重要施工材料。作为用于描述未结合粒状材料性能的最重要的指标之一,变形特性受到使用的压实方法的显着影响。然而,在现有研究中忽略了压实方法对变形行为的影响。因此,我们研究了通过重复的三轴载荷试验的垂直振动压实方法(VVCM)和改进的标纹压实方法(MPCM)产生的未结合粒状材料的变形特性,并揭示了负载条件和骨料灰度的效果。结果表明,(a)由于应力水平和狭窄压力增加,未结合粒状材料的变形降低; (b)由VVCM产生的未结合粒状材料的变形电阻优于MPCM产生的粒子; (c)使用VVCM和MPCM之间产生的变形性差异随着限制的压力而降低,并且在应力水平的变化不显着; (d)从最大到最多的变形特征的各种因素的程度如下:压力水平?> _ _汇级灰度?>?压实方法?>?限制压力; (e)增加粗聚集体的含量有利于提高未结合粒状材料的变形性,特别是对于VVCM。最后,建立了一种模拟和预测变形的简单方法。

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