再生沥青路面在土壤稳定中的可持续利用

Danilo Lima, Jair Arrieta-Baldovino, Ronaldo L. S. Izzo
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摘要

本研究研究了巴西南部库里蒂巴Guabirotuba组沉积土壤中未使用的再生沥青路面(RAP)。分别在纯土中加入和不加入火山灰硅酸盐水泥的情况下,加入不同比例的RAP(重量比为0% ~ 80%)。在固化28天后,对混合物的压实性能、机械强度和膨胀率进行了测试。结果表明,RAP的加入提高了混合料的无侧限抗压强度(qu)和劈裂抗拉强度(qt)。当RAP达到60%时,与纯土相比,qu增加了260 kPa, qt增加了340 kPa。加州土壤承载比(CBR)试验表明,在未处理土壤中添加80% RAP可提高18.62%。此外,RAP还降低了压实共混物的膨胀率,当RAP用量为80%时,膨胀率从1.19%降至0.88%。加入水泥后,膨胀值进一步降低至0.86%。水泥-土- rap压实共混物适合路基加固,满足膨胀率1%和CBR>2%。此外,3%水泥和40% RAP混合料适合作为亚基层,膨胀率为1%,CBR为1%;20%。该结果为利用RAP作为土壤改良技术的替代材料提供了有价值的见解,该技术采用了新颖的孔隙度-水泥指数。Doi: 10.28991/CEJ-2023-09-09-016全文:PDF
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Sustainable Use of Recycled Asphalt Pavement in Soil Stabilization
This study addresses unused recycled asphalt pavement (RAP) incorporated into sedimentary soil from the Guabirotuba Formation in Curitiba, Southern Brazil. Different percentages of RAP, ranging from 0% to 80% by weight, were mixed with the pure soil, with and without the addition of pozzolanic Portland cement. Tests were conducted to evaluate the mixtures' compaction properties, mechanical strength, and expansion after curing for up to 28 days. The results showed that adding RAP improved the mixtures' unconfined compressive strength (qu) and splitting tensile strength (qt). Up to 60% RAP, the qu increased by 260 kPa, and the qt increased by 340 kPa compared to the pure soil. The California Bearing Ratio (CBR) tests demonstrated an 18.62% improvement when 80% RAP was added to the untreated soil. In addition, the RAP also reduced the expansion of the compacted blends, with values decreasing from 1.19% to 0.88% with 80% RAP replacement. The expansion value was further reduced to 0.86% when the cement was added. The cement-soil-RAP compacted blends showed suitability for subgrade reinforcement, meeting the criteria of expansion <1% and CBR> 2%. Additionally, 3% cement and 40% RAP mixtures were suitable as a sub-base layer, with expansion <1% and CBR > 20%. The results provide valuable insights into utilizing RAP as an alternative material in soil improvement techniques employing the novelty porosity-to-cement index. Doi: 10.28991/CEJ-2023-09-09-016 Full Text: PDF
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