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首页> 外文期刊>Journal of materials in civil engineering >Effect of Radial Inhomogeneity on Shear Properties of Asphalt Mixtures
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Effect of Radial Inhomogeneity on Shear Properties of Asphalt Mixtures

机译:径向不均匀性对沥青混合料剪切性能的影响

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摘要

Radial inhomogeneity is often observed in superpave gyratory compacted specimens because of the rotational movement of the gyratory and the boundary condition imposed by the gyratory mold. The effect of the inhomogeneity on mechanical properties of asphalt mixtures is not known. To study this effect, laboratory specimens of asphalt mixtures with known levels of aggregate inhomogeneity were fabricated. Nondestructive X-ray computed tomography was used to scan cross-sectional images of the specimens. A statistical index was developed to evaluate the scanned images for radial inhomogeneity. The results clearly show that the index can distinguish between levels of inhomogeneity. By means of frequency sweep at constant height (FSCH) test, the shear stiffness and the fatigue susceptibility at test temperature of 25 ℃ and the shear stiffness and rutting susceptibility attest temperature of 50℃ were evaluated. The resistance of the material to cumulative shear deformation was measured using the repeated shear at constant height (RSCH) test at 50℃. The effects of radial inhomogeneity on the shear properties of the specimens were investigated at the two test temperatures. As indicated from the FSCH test, the shear modulus increases, the rutting susceptibility, and the fatigue susceptibility in thick layers decreases, and the fatigue susceptibility in thin layers increases with increasing radial inhomogeneity. The correlation between the shear properties from the FSCH test and the inhomogeneity index is greater at the test temperature of 25℃ than at the test temperature of 50℃. Although the RSCH test is conducted at 50 ℃, the permanent deformations resulted from the test shows the highest correlation with the level of inhomogeneity. The permanent strain decreases significantly with the increase in the level of inhomogeneity. The results of this study indicate that predicting the performance of the same material in the field based on the properties of laboratory-made specimens will lead to overprediction of the field performance and as a result underdesign of pavements.
机译:由于回转的旋转运动和回转模具施加的边界条件,在超铺面回转压实样品中经常观察到径向不均匀性。不均匀性对沥青混合物的机械性能的影响是未知的。为了研究这种影响,制造了已知水平的骨料不均匀性的沥青混合料实验室标本。使用非破坏性X射线计算机断层扫描来扫描标本的横截面图像。开发了统计指标以评估扫描图像的径向不均匀性。结果清楚地表明,该指数可以区分不均匀程度。通过等高频率扫频(FSCH)试验,对25℃试验温度下的剪切刚度和疲劳敏感性以及50℃试验温度下的剪切刚度和车辙敏感性进行了评估。使用在50℃进行的恒定高度重复剪切(RSCH)测试,测量材料对累积剪切变形的抵抗力。在两个测试温度下研究了径向不均匀性对试样剪切性能的影响。如FSCH测试所示,随着径向不均匀性的增加,剪切模量增加,车辙敏感性和厚壁疲劳敏感性降低,而薄层的疲劳敏感性则增加。 FSCH试验的剪切特性与不均匀指数之间的相关性在25℃的试验温度下比在50℃的试验温度下更大。尽管RSCH试验是在50℃下进行的,但试验产生的永久变形与不均匀程度之间的相关性最高。随着不均匀程度的增加,永久应变显着降低。这项研究的结果表明,基于实验室制造的标本的特性来预测相同材料在野外的性能将导致对野外性能的过度预测,从而导致路面设计不足。

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