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Evaluation of the sensitivity of different indices to the moisture resistance of bituminous mixes modified by hydrated lime and other modifiers

机译:评估不同指标对熟石灰和其他改性剂改性的沥青混合物的耐湿性的敏感性

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摘要

The beneficial effect of hydrated lime added as filler to bituminous mixes in improving the moisture damage resistance of mixes has been known for a long time. However, the effect of binder modification using hydrated lime is less explored. Similarly, very little information is available on the influence of hydrated lime on the moisture resistance of bituminous mixes under critical conditions of high temperature and slow rate of loading. Extensive experimental investigations were conducted in the present study to quantify the relative beneficial effect of addition of hydrated lime in dry and wet methods on the moisture resistance of bituminous mixes. In the dry method, 1.5% and 2% lime (by weight of dry aggregate) was added as filler whereas in the wet method, VG30 and VG40 bitumen were modified using 20% and 30% lime (by weight of virgin binder). The moisture damage resistance of these mixes was evaluated by conducting different tests such as indirect tensile strength, dynamic modulus and dynamic creep tests to assess the sensitivity of different mix parameters in estimating the moisture resistance and to measure the influence of moisture damage on the mechanical properties and rutting performance. The performance of the conventional and lime-modified mixes was also compared with that of polymer and crumb rubber-modified bituminous mixes since lime-modified mixes have been evaluated in this study as possible alternatives to PMB and CRMB mixes, which are popularly used for roads with high traffic volumes. Lime-modified mixes were found to have the best moisture resistance compared to unmodified mixes and PMB- and CRMB-modified mixes. Evaluation of moisture damage in terms of dynamic modulus and dynamic creep tests was found to be significantly more sensitive to moisture damage compared to tensile strength ratio. The beneficial effect of lime has been observed to be significantly more under more severe conditions of high temperature and slow rate of loading compared to lower temperature and high frequency conditions.
机译:早就知道了作为填料添加到沥青混合物中的熟石灰在改善混合物的耐湿气破坏性方面的有益作用。然而,使用熟石灰改性粘合剂的效果很少被探索。同样,在高温和慢速加料的关键条件下,关于熟石灰对沥青混合料耐湿性的影响的信息很少。在本研究中进行了广泛的实验研究,以量化在干法和湿法中添加熟石灰对沥青混合料的耐湿性的相对有益效果。在干法中,加入1.5%和2%的石灰(以干骨料的重量计)作为填料,而在湿法中,VG30和VG40沥青使用20%和30%的石灰(以原始粘结剂的重量计)进行改性。通过进行间接拉伸强度,动态模量和动态蠕变测试等不同测试来评估这些混合物的耐湿气破坏性,以评估不同混合物参数在评估耐湿性方面的敏感性,并测量湿气破坏对机械性能的影响。和车辙性能。常规和石灰改性的混合物的性能也与聚合物和橡胶碎料改性的沥青混合物的性能进行了比较,因为在本研究中对石灰改性的混合物进行了评估,认为它可以替代PMB和CRMB混合物,后者广泛用于道路高流量。与未改性的混合物以及PMB和CRMB改性的混合物相比,发现石灰改性的混合物具有最佳的耐湿性。与拉伸强度比相比,发现通过动态模量和动态蠕变测试评估湿气损害对湿气损害更为敏感。与较低温度和高频条件相比,在高温和慢速加载的更严酷条件下,石灰的有益效果要明显得多。

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