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Rubberized asphalt mixture design using a theoretical model

机译:橡胶沥青混合料的理论模型设计

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摘要

A theoretical model was introduced for designing the rubberized asphalt mixtures and validated by mixture tests in this paper. This model is comprised of three parts: fine aggregate gradation design, coarse aggregate gradation design and mixture volumetric design. The rubberized asphalt mixture with a nominal maximum aggregate size of 13 mm (AR-13) was designed with this model. The orthogonal experimental design method was then employed to study the effect of design parameters (air voids (VV), voids in mineral aggregate (VMA) and Fuller-curve's exponent n) on the rutting performance of the mixture. The orthogonal experimental results indicate that the VV and VMA are the two key parameters which affect the rutting performance of the rubberized asphalt mixtures. The design parameter optimal combination and performance requirements of AR-13 were finally recommended based on the experimental results and previous experiences in China and America.
机译:介绍了一种设计橡胶沥青混合料的理论模型,并通过混合试验进行了验证。该模型由三部分组成:细骨料级配设计,粗骨料级配设计和混合料体积设计。使用此模型设计了标称最大骨料尺寸为13毫米(AR-13)的橡胶沥青混合料。然后采用正交实验设计方法研究设计参数(空气空隙(VV),矿物骨料中的空隙(VMA)和富勒曲线指数n)对混合物车辙性能的影响。正交试验结果表明,VV和VMA是影响橡胶沥青混合料车辙性能的两个关键参数。最后根据实验结果和中美两国的经验,提出了AR-13的设计参数最优组合和性能要求。

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