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首页> 外文期刊>Journal of materials in civil engineering >Analysis of Aggregate Gradation and Packing for Easy Estimation of Hot-Mix-Asphalt Voids in Mineral Aggregate
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Analysis of Aggregate Gradation and Packing for Easy Estimation of Hot-Mix-Asphalt Voids in Mineral Aggregate

机译:骨料的分级和堆积分析,可轻松估算矿物骨料中的热混合沥青空隙

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摘要

The voids in mineral aggregate (VMA) design parameter is one of the most important in the current Superpave mix design procedure that links hot-mix-asphalt (HMA) mix properties to field performance. The success of achieving the appropriate VMA at an early stage of the mix-design process not only significantly impacts the design time and effort but also can produce an economical and reasonable design with good field performance. Although several current mix and gradation design methods have provided some guidance on adjusting gradation to achieve target VMA, these approaches still have to rely on initial experimental results with some degree of trial and error, and provide no direct correlation between aggregate gradation and VMA. This paper presents an analysis of aggregate packing and discrete-element modeling (DEM) simulation to link the aggregate gradation property to the VMA of HMA. A new definition is proposed for characterizing traditional dense-graded aggregate gradations into three types: coarse-graded, medium-graded, and fine-graded. A gradation weighing factor, f_v, defined as the percentage of voids change by volume caused by unit additional aggregate, is developed to theoretically evaluate the packing of an aggregate structure. A method of VMA estimation based on the generated f_v values is thus provided. Eleven mix designs from different states are used for verifying the accuracy of the prediction. Most predictions are within 1 % difference of the design VMA. Using one nominal maximum aggregate size (NMAS) of 12.5 mm as an example, this study provided a promising method for a fast and accurate VMA estimation. It can be used directly in the HMA mix design to reduce the design time and effort, and contribute to the estimation of the HMA mixture performance at an early stage of the design period.
机译:矿物骨料中的空隙(VMA)设计参数是当前Superpave混合设计过程中最重要的参数之一,该过程将热混合沥青(HMA)混合属性与现场性能联系在一起。在混合设计过程的早期阶段成功实现适当的VMA不仅会极大地影响设计时间和工作量,而且还可以产生具有良好现场性能的经济合理的设计。尽管目前的几种混合和等级设计方法已为调整等级以实现目标VMA提供了一些指导,但这些方法仍必须依靠初始实验结果并经过一定程度的反复试验,并且在聚集等级与VMA之间没有直接关联。本文对骨料填充和离散元建模(DEM)仿真进行了分析,以将骨料的分级特性与HMA的VMA关联起来。提出了一个新的定义,将传统的密实等级的骨料等级分为三种类型:粗等级,中等级和细等级。开发了一个分级称重因子f_v,定义为空隙由单位附加集料引起的体积变化百分比,以从理论上评估集料结构的堆积。因此,提供了一种基于所生成的f_v值的VMA估计方法。来自不同状态的11种混合设计用于验证预测的准确性。大多数预测与设计VMA的差异在1%以内。以12.5 mm的最大标称最大骨料尺寸(NMAS)为例,本研究提供了一种快速而准确的VMA估算方法。它可以直接用于HMA混合物设计中,以减少设计时间和工作量,并有助于在设计阶段的早期估计HMA混合物的性能。

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