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Determining Aggregate Frost Susceptibility with the Tube Suction Test

机译:用管吸测试确定总的霜冻敏感性

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The Tube Suction Test (TST) was developed in a cooperative effort between the Finnish National Road Administration and the Texas Transportation Institute (TTI) for assessing the moisture susceptibility of aggregate base materials. The moisture susceptibility ranking is based on the mean surface dielectric value of compacted specimens after a 10-day capillary soak, where the dielectric value is most sensitive to the amount of unbound water that exists within the aggregate matrix. The purpose of this research was to investigate the relationship between the final dielectric value in the TST and the frost susceptibility of aggregates. The laboratory test program included 35 specimens representing 10 aggregate base materials from Indiana, Minnesota, Pennsylvania, Texas, and Virginia. Each sample was subjected to the TST and afterwards to a frost heave test developed at TTI. In the TST, electrical conductivity measurements were also made to evaluate the salinity of the specimens. Sample volumetrics were computed and compared for post-TST and post-freezing conditions. In this study, aggregates classified in the TST as good performers did not experience significant frost heave, while several materials with higher dielectric values exhibited substantial amounts of heave. These latter specimens were characterized, on average, by greater percentages of fines, higher porosity, and higher moisture contents in the TST. Aggregate samples with high salinity also had high dielectric values in the TST, but they were generally less frost susceptible than other high-dielectric specimens due to the depression of the freezing point caused by salt ions in the pore water. Samples with high porosity also exhibited reduced frost heave because the additional internal space allowed the formation of ice with less expansion of the aggregate matrix.
机译:管道抽吸试验(TST)是在芬兰国家道路管理局和德克萨斯运输学院(TTI)的共同努力下开发的,用于评估骨料基础材料的水分敏感性。湿气敏感性等级是基于经过10天毛细管浸泡后的压实样品的平均表面介电值,其中介电值对骨料基质中未结合的水量最为敏感。这项研究的目的是研究TST中最终介电值与集料的霜冻敏感性之间的关系。实验室测试程序包括35个标本,代表了来自印第安纳州,明尼苏达州,宾夕法尼亚州,德克萨斯州和弗吉尼亚州的10种骨料。每个样品都要经过TST测试,然后在TTI进行霜冻试验。在TST中,还进行了电导率测量以评估样品的盐度。计算样品体积,并比较TST后和冷冻后的条件。在这项研究中,在TST中被归类为性能优良的骨料没有经历明显的冻胀,而几种介电值较高的材料则表现出大量的冻胀。后面这些试样的平均特征是,TST中的细粉百分比更高,孔隙率更高,水分含量更高。高盐度的骨料样品在TST中也具有较高的介电值,但由于孔隙水中盐离子引起的凝固点降低,因此与其他高介电质样品相比,它们对霜冻的敏感性较低。具有高孔隙率的样品还表现出减少的霜冻起伏,这是因为额外的内部空间允许形成具有较少聚集体膨胀的冰。

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