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Moisture Susceptibility of Warm Mix Asphalt (WMA) with an Organic Wax Additive Based on X-Ray Computed Tomography (CT) Technology

机译:基于X射线计算机断层扫描(CT)技术的有机蜡添加剂的温热沥青(WMA)的水分敏感性

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The warm mix asphalt was fabricated with different moisture contents (0%, 1%, 2%, and 3%) of limestone aggregates using the Superpave gyratory compactor. The moisture susceptibility of asphalt mixtures with an organic wax additive RH was studied. The samples were compacted and tested using the modified Lottman test AASHTO T283, and the X-ray computed tomography technology was used to capture the internal structure images before and after the freeze-thaw cycles. The test results show that the air voids were distributed in the size range of 0–5?mm3 and 5–10?mm3. The number of air voids decreased with the increase of air void size and increased after freeze-thaw cycles. The air void content can be influenced by the residual moisture in aggregates. The higher the moisture content of aggregates is, the larger the air void content is. So, the air void content is likely to be sensitive to moisture damage. The increase ratio of the air void and moisture content of aggregates had good correlation with the indirect tensile strength and tensile strength ratio of the samples. The indirect tensile strength and tensile strength ratio of the samples decreased linearly, and the samples were sensitive to the moisture damage with the increases of increase ratio of the air void/moisture content in aggregates.
机译:使用SuperPave陀螺压紧器,用不同的水分含量(0%,1%,2%和3%)的石灰石聚集体制备温热的沥青。研究了沥青混合物与有机蜡添加剂Rh的水分敏感性。使用改进的洛克曼测试AASHTO T283压实并测试样品,并且使用X射线计算机断层摄影技术在冻融循环之前和之后捕获内部结构图像。测试结果表明,空隙分布在0-5Ωmm3和5-10Ωmm3的尺寸范围内。随着空隙尺寸的增加和冻融循环后增加,空气空隙的数量降低。空隙含量可以受到聚集体中残留水分的影响。聚集体的水分含量越高,空隙含量越大。因此,空隙含量可能对水分损坏敏感。聚集体的空隙和水分含量的增加比与样品的间接拉伸强度和拉伸强度比具有良好的相关性。样品的间接拉伸强度和拉伸强度比线性降低,并随着聚集体中空隙/水分含量的增加率增加而对水分损伤敏感。

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