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首页> 外文期刊>Journal of materials in civil engineering >Laboratory Evaluation of the Workability and Compactability of Asphaltic Materials prior to Road Construction
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Laboratory Evaluation of the Workability and Compactability of Asphaltic Materials prior to Road Construction

机译:道路施工之前沥青材料的可加工性和可压实性的实验室评估

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Asphalt mix compaction is dependent on many factors, particularly gradation, asphalt grade and content, aggregate size, temperature, and compactor manufacturer. The new development in polymer-modified asphalt has a major impact on asphalt pavement compaction in the field. Although it leads to improving overall mechanical characteristics, there are concerns that mixes become drier and more difficult to compact. This paper aims to develop compaction indices using the Superpave gyratory compactor to evaluate the workability and compact-ability of the mixes during the routine mix design process and prior to laydown operations. Workability is reflected in the ease of blending the mix components using construction equipment. Compactability is reflected in the mixes' stability and resistance to densification under traffic loading. To identify adequate thresholds for the compactability indices, performance testing is required to validate the long-term behavior of these mixes. This was accomplished in two phases: laboratory performance testing and field performance testing. The former was conducted using Hamburg wheel tracking, rutting, and dynamic modulus tests, whereas the latter phase was accomplished through accelerated pavement testing. Evaluation of the mixes' internal structure effect on the compaction indices, in terms of aggregate orientation and number of contacts, was also investigated.
机译:沥青混合料的压实取决于许多因素,特别是等级,沥青等级和含量,集料尺寸,温度和压实机制造商。聚合物改性沥青的新发展对该领域的沥青路面压实产生了重大影响。尽管它可以改善整体机械性能,但人们担心混合物会变得更干燥且更难压实。本文旨在使用Superpave旋转压实机来开发压实指数,以评估常规混合料设计过程中以及铺放操作之前混合料的可加工性和可压实性。可施工性体现在使用建筑设备轻松混合混合组分的过程中。压实性体现在混合料的稳定性和在交通负荷下的抗致密性。为了确定可压实性指标的适当阈值,需要进行性能测试以验证这些混合物的长期性能。这分两个阶段完成:实验室性能测试和现场性能测试。前者使用汉堡轮跟踪,车辙和动态模量测试进行,而后者则通过加速路面测试完成。还研究了混合料内部结构对压实指数的影响,包括骨料取向和接触数。

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