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Laboratory evaluation of the mechanical properties of plant-produced warm-mix asphalt mixtures

机译:对工厂生产的热拌沥青混合料的机械性能进行实验室评估

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This paper presents a laboratory evaluation of plant-produced asphalt mixtures containing the control hot-mix asphalt (HMA) and four warm-mix asphalt (WMA) technologies: an organic additive (Sasobit~®) and three foaming processes (Advera~®, low-emission asphalt, and Gen-cor). These asphalt mixtures were produced using a single binder performance grade (PG 64-22) and 9.5-mm nominal maximum aggregate size Superpave mix design compacted to 75 design gyrations. Dynamic modulus (E~*), flow number, and Hamburg wheel-track tests were utilised to evaluate the mechanical properties of the asphalt mixtures. The PG of the asphalt binders containing the WMA technologies was also verified. In addition, their rheological properties were evaluated using shear modulus master curves and multiple stress creep recovery tests. It was found that the asphalt binder containing Sasobit~® technology increased the continuous high-temperature binder grade by 6℃ and measured higher elastic properties. In general, the asphalt mixture prepared with Sasobit~® technology and the control HMA mixture measured higher stiffness than those prepared with the other WMA technologies and measured the highest dynamic modulus rutting parameter and fatigue cracking parameter. In addition, these mixtures demonstrated increased resistance to rutting and moisture damage. Statistical analysis indicated that the binder rheological properties, WMA dosage rates, and production temperatures influenced the performance of the WMA mixtures.
机译:本文介绍了一种实验室评估的工厂生产的沥青混合料,其中包含控制性热拌沥青(HMA)和四种温拌沥青(WMA)技术:一种有机添加剂(Sasobit®)和三种发泡工艺(Advera®,低排放沥青和Gen-cor)。这些沥青混合料是使用单一的粘合剂性能等级(PG 64-22)和标称最大集料尺寸为9.5毫米的Superpave混合料设计生产的,压缩到75个设计回转。动态模量(E〜*),流量和汉堡轮迹测试被用来评估沥青混合料的机械性能。还验证了包含WMA技术的沥青粘合剂的PG。此外,使用剪切模量主曲线和多次应力蠕变恢复测试对它们的流变性能进行了评估。结果发现,采用Sasobit®技术的沥青粘结剂将连续高温粘结剂等级提高了6℃,并具有较高的弹性。通常,用Sasobit®技术制备的沥青混合料和对照HMA混合物测得的刚度要高于使用其他WMA技术制备的沥青混合料,并且测得的最高动态模量车辙参数和疲劳裂纹参数。另外,这些混合物显示出对车辙和水分损坏的增强的抵抗力。统计分析表明,粘合剂的流变性能,WMA剂量率和生产温度影响WMA混合物的性能。

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