使用大理石废料替代粗骨料组分的 ac-wc 混合物的特性和变形研究

Liliyan Bea, L. Basri, Andi Alifuddin
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引用次数: 0

摘要

车辆重复和过大的荷载压力是造成路面变形的原因之一,这是因为路面层失去了强度,导致路面层下陷并出现裂缝。大理石废料是大理石加工过程中产生的剩余废料。大理石加工过程会造成环境污染。随着时间的推移,产生的大理石废料逐渐增多,因此需要利用这些大理石废料。大理石废料有望提高 AC-WC 混合料的质量和抗变形性能,并具有良好的混合料特性。本研究旨在探讨使用大理石废料对混合料特性和变形的影响。试验采用了马歇尔试验和轮迹跟踪工具。结果表明,使用 KAO 6% 的混合料特性和 KLMO、总变形、变形率和动态稳定性,获得的最佳大理石废料含量(KLMO)为 25%。在大理石废料变化率为 25% 时,最高稳定性和马歇尔截距分别为 1024.89 kg 和 345.65 kg/mm。大理石废料变化率为 25% 时,混合物的最低流动值为 2.97 毫米。25% 的变化具有良好的混合物特性和耐久性。大理石废料变化率为 25% 时,总变形量最小为 0.903 毫米,动态稳定性为 2864 次/毫米,变形率为 0.0147 毫米/分钟。
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KAJIAN KARAKTERISTIK DAN DEFORMASI CAMPURAN AC-WC DENGAN PENGGUNAAN SUBTITUSI LIMBAH MARMER SEBAGAI FRAKSI AGREGAT KASAR
Repetitive and excessive load pressure by vehicles is one of the damages that occurs on road pavement deformation due to the pavement layer losing its strength, causing the road layer to subside and cracks to occur. Marble waste is the remaining waste acquired from the processing of the marbles. Environmental pollution is caused by the marble processing process. The marble waste produced is increasing gradually over time, therefore, it is needed to utilize that marble waste. The marble waste is expected to improve the quality and performance of the mixture in resisting deformation in the AC-WC mixture and has good mixture characteristics. This research aims to examine the cause of using marble waste on the characteristics and deformation of the mixture. The test in this research applies the marshall test and wheel tracking tool. The result showed that the characteristics of the mixture and KLMO, total deformation, deformation rate, and dynamic stability using KAO 6% and the Optimum Marble Waste Content (KLMO) obtained was 25%. The highest stability and Marshall Quatient were 1024.89 kg and 345.65 kg/mm at 25% marble waste variation. The lowest flow value in the mixture with 25% marble waste variation was 2.97 mm. The 25% variation has good mixture characteristics and durability. The smallest total deformation was 0.903 mm at 25% marble waste variation, dynamic stability 2864 passes/mm, and deformation rate 0.0147 mm/minute.
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