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Performance analysis of a Cold Asphalt Concrete Binder Course Containing High Calcium Fly Ash Utilizing Waste Material

机译:利用废料制备高钙粉煤灰的冷沥青混凝土粘结剂层的性能分析

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摘要

It has been established that cold bituminous emulsion mixtures (CBEMs) have a comparatively low initial strength in comparison to hot mix asphalt (HMA), however its superior performance with regard to carbon emissions, is a significant driver regarding its manufacture. In this research, high calcium fly ash (HCFA) together with a fluid catalytic cracking catalyst (FCC) - a rich silica-alumina waste material - have been incorporated to develop a new cold asphalt concrete binder course (CACB) bituminous emulsion mixture. HCFA was used as a substitute for traditional limestone filler while FCC was the additive used to activate the HCFA. The mixtures’ performance was assessed using the indirect tensile stiffness modulus test (ITSM), assessment of resistance against permanent deformation, temperature and water sensitivity tests. Surface morphology was tested using a scanning electron microscopy (SEM). A considerable improvement was identified by the ITSM test in addition to a substantial enhancement in rutting resistance, temperature susceptibility and water sensitivity. It was also established that the addition of FCC to CACB mixtures was found to improve early strength as well as long-term strength, rutting resistance, temperature sensitivity and durability.
机译:已经确定,与热混合沥青(HMA)相比,冷沥青乳液混合物(CBEM)的初始强度相对较低,但是就碳排放而言,其优越的性能是其制造的重要推动力。在这项研究中,高钙粉煤灰(HCFA)与流化催化裂化催化剂(FCC)(一种富含二氧化硅-氧化铝的废料)已被掺入,以开发一种新型的冷沥青混凝土粘结剂层(CACB)沥青乳液混合物。 HCFA被用作传统石灰石填料的替代品,而FCC是用于活化HCFA的添加剂。使用间接拉伸刚度模量测试(ITSM)评估混合物的性能,评估其抗永久变形性,温度和水敏感性测试。使用扫描电子显微镜(SEM)测试表面形态。除了显着提高了耐车辙性,对温度的敏感性和对水的敏感性之外,通过ITSM测试还发现了相当大的改进。还确定将FCC添加到CACB混合物中可以改善早期强度以及长期强度,耐车辙性,温度敏感性和耐久性。

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