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首页> 外文期刊>Journal of materials in civil engineering >Aggregate Properties Affecting Shear Strength and Permanent Deformation Characteristics of Unbound-Base Course Materials
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Aggregate Properties Affecting Shear Strength and Permanent Deformation Characteristics of Unbound-Base Course Materials

机译:影响未结合基础课程材料抗剪强度和永久变形特性的骨料特性

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摘要

Resistance to permanent deformation is the primary performance indicator of unbound aggregate pavement layers. In relation to the applied wheel-load deviator stress, the shear strength property of a confined base/subbase controls the rate of permanent strain accumulation in that aggregate layer. The objective of this study was to quantify the impact of aggregate properties on the shear strength and permanent deformation characteristics of unbound aggregates. Sixteen different aggregates were studied in the laboratory for two different gradations: original quarry source and engineered midrange gradations. Aggregate specimens were prepared at these gradations to determine moisture-density relationships, and conduct monotonic and repeated load triaxial tests at the target maximum dry densities and optimal moisture contents. In addition, imaging-based aggregate particle shapes or morphological indices were obtained. The laboratory findings indicated that the particle size corresponded to 60% passing, and imaging-based angularity index contributed significantly to the increases in the shear strength properties of aggregates, which were also affected by density and moisture content. Permanent strain accumulations were primarily influenced by applied shear stress in relation to the shear strength of aggregates, and rutting model parameters obtained through regression analyses were influenced by applied stress, strength, and material properties. Further, an aggregate with plastic fines showed the highest permanent strain accumulation, hence clearly indicating the significant influence of plasticity of fines on the permanent strain accumulation.
机译:抵抗永久变形是未结合骨料路面的主要性能指标。关于施加的车轮载荷偏斜应力,承压基层/基层的抗剪强度特性控制着该骨料层中永久应变的积累速率。这项研究的目的是量化骨料性能对未结合骨料的抗剪强度和永久变形特征的影响。在实验室中针对两种不同的等级研究了16种不同的骨料:原始采石场资源和工程中型等级。在这些等级下准备骨料样品以确定水分密度关系,并在目标最大干密度和最佳水分含量下进行单调和重复载荷三轴试验。另外,获得基于成像的聚集体颗粒形状或形态学指标。实验室发现表明,颗粒尺寸相当于通过率的60%,基于成像的成角指数显着促进了骨料的剪切强度性能的提高,而骨密度也受密度和水分含量的影响。永久应变累积主要受施加的剪应力与骨料抗剪强度的影响,而通过回归分析获得的车辙模型参数受施加的应力,强度和材料特性的影响。此外,具有塑料细粉的聚集体显示出最高的永久应变累积,因此清楚地表明了细粉的可塑性对永久应变累积的显着影响。

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