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Implementation of a Balanced Asphalt Mixture Design Procedure: Louisiana's Approach

机译:平衡沥青混合料设计程序的实施:路易斯安那州的方法

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Conventional asphalt mixture design methodologies such as Superpave, Marshall, and Hveem are used to determine the optimum asphalt binder content by means of physical and volumetric laboratory measurements. All three procedures ensure the materials proportion and quantity of the asphalt cement binder are adequate to meet stability and durability concerns. However, with the increased use of recycled materials, there is a need to develop laboratory mechanical tests in order to evaluate the quality of the asphalt cement binder to complement the Superpave volumetric mixture design procedure. An important component to successful mixture design is the balance between volumetric composition and material compatibility. Balanced asphalt mixture design offers innovation in designing mixtures for performance and evaluation of the quality of a mix design relative to the anticipated performance using a rational approach. This research documents the selection of laboratory mechanical tests, in addition to volumetric requirements, that can ascertain a mixture's resistance to common asphalt pavement distresses. Factors in the selection of laboratory mechanical tests such as availability of standard test procedures, advantages and limitations, laboratory-to-field correlations, and sensitivity to mixture composition are reviewed. Further, an implementation framework and case histories is also discussed.
机译:传统的沥青混合料设计方法,如Superpave,Marshall和Hveem,可通过物理和体积实验室测量来确定最佳的沥青结合料含量。所有这三个步骤可确保沥青水泥粘合剂的材料比例和数量足以满足稳定性和耐久性的要求。但是,随着回收材料使用的增加,有必要开展实验室机械测试,以评估沥青水泥粘合剂的质量,以补充Superpave体积混合物设计程序。成功的混合物设计的重要组成部分是体积组成和材料相容性之间的平衡。平衡的沥青混合料设计在设计混合料以提供性能方面进行了创新,并使用合理的方法相对于预期性能评估了混合料设计的质量。这项研究记录了除了体积要求外,还可以选择实验室机械测试,这些测试可以确定混合物对普通沥青路面病害的抵抗力。审查了选择实验室机械测试的因素,例如标准测试程序的可用性,优点和局限性,实验室与现场的相关性以及对混合物成分的敏感性。此外,还讨论了实现框架和案例历史。

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