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Laboratory Studies to Examine the Properties of a Novel Cold-Asphalt Concrete Binder Course Mixture Containing Binary Blended Cementitious Filler (BBCF)

机译:实验室研究,以研究一种新型的含有二元混合水泥填充料的冷沥青混凝土粘合剂层混合物的性能

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摘要

Conventional hot asphalt mixtures have an impact on global warming and CO2 emissions contributing to debates on environmental issues which have been raised in recent years. As an alternative, cold emulsion asphalt mixtures (CBEMs) provide considerable benefits such as eco-friendliness, energy efficiency and cost effectiveness connected with safety. However, their weak early strength along with the need for longer curing times (usually 2-24 months) and higher moisture susceptibility compared to hot asphalt mixtures, have been cited as obstacles to their wider application. That said, the incorporation of waste materials in CBEM mixtures enhances sustainability by decreasing the amount of industrial waste materials needed and conserving natural resources. A new binary blended cement filler (BBCF) material generated from high calcium fly ash (HCFA) and fluid catalytic cracking catalyst (FC3R) was found to be very effective in providing microstructural integrity with a novel fast-curing cold asphalt concrete for the binder course (CACB) mixture. Laboratory performance tests included the stiffness modulus test by indirect tension to cylindrical samples, wheel-tracking tests and water sensitivity. Regarding environmental issues, a toxicity characteristic leaching procedure (TCLP) test was performed to analyse the leachate from various specimens comprising concentrations of heavy metal. The findings of these tests have demonstrated that CACB performs extremely well compared to traditional hot mixtures. The stiffness modulus of the BBCF treated mixture – 3730 MPa after 3 days – is higher than the traditional hot mixture (100/150 pen). In addition, the BBCF treated mixture offered a superior performance regarding rutting resistance, fatigue resistance and water susceptibility as well as revealing a considerably lower thermal sensitivity. More significantly, the BBCF treated mixture was found comparable to the traditional asphalt concrete binder course after a very short curing time (1 day). Finally, the concentration of heavy metals in the specimens incorporating the BBCF was observed to be less than the regulatory levels determined for hazardous materials and so requirements were satisfied. Consequently, this BBCF treated mixture has significant potential with reference to its application as a binder course in asphalt pavement.
机译:传统的热沥青混合物对全球变暖和二氧化碳排放有影响,这引起了近年来有关环境问题的辩论。作为替代方案,冷乳化沥青混合料(CBEM)具有相当大的好处,例如生态友好,能源效率和与安全相关的成本效益。然而,与热沥青混合物相比,它们的早期强度较弱,以及需要更长的固化时间(通常为2-24个月)和较高的湿气敏感性,被认为是其广泛应用的障碍。就是说,将废料掺入CBEM混合物中可以减少所需的工业废料量并节省自然资源,从而提高了可持续性。发现一种由高钙粉煤灰(HCFA)和流化催化裂化催化剂(FC3R)生成的新型二元共混水泥填料(BBCF)材料,通过新型快速固化的冷沥青混凝土作为粘结剂层,可非常有效地提供微观结构完整性(CACB)混合物。实验室性能测试包括通过间接拉伸圆柱形样品进行的刚度模量测试,车轮跟踪测试和水敏感性。关于环境问题,进行了毒性特征浸出程序(TCLP)测试,以分析来自包含重金属浓度的各种标本的渗滤液。这些测试的结果表明,与传统的热混合物相比,CACB的性能非常好。经过BBCF处理的混合物的刚度模量(3天后为3730 MPa)高于传统的热混合物(100/150 pen)。此外,经BBCF处理的混合物在抗车辙,抗疲劳和水敏感性方面表现出优异的性能,并显示出相当低的热敏性。更重要的是,在非常短的固化时间(1天)后,发现经BBCF处理的混合物可与传统的沥青混凝土粘合剂层媲美。最后,观察到掺有BBCF的样品中重金属的浓度低于为有害物质确定的监管水平,因此可以满足要求。因此,该BBCF处理过的混合物具有很强的潜力,可将其用作沥青路面的粘结层。

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