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首页> 外文期刊>Advances in civil engineering >Laboratory Investigation into Early-Age Strength Improvement of Cold Recycled Asphalt Mixture Containing Asphalt Emulsion and Cement
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Laboratory Investigation into Early-Age Strength Improvement of Cold Recycled Asphalt Mixture Containing Asphalt Emulsion and Cement

机译:沥青乳液和水泥含有冷再生沥青混合料的早期强度改善的实验室调查

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摘要

Cold recycled asphalt mixture (CRAM) has been reported to be able to provide a cleaner method to rehabilitate damaged asphalt pavement. This work used the CRAM containing emulsified asphalt (AE) and cement to investigate the methods of improving its early-age strength by considering mixture composition, including the types of AE and cement and the contents of AE, cement, and moisture. The curing conditions, such as temperature and humidity, were also involved. The results show that the mixture should be carefully designed to determine optimum AE and moisture content. Also, high cement content was helpful to increase the early-age strength. By changing the curing environment, it was found that raising curing temperature and applying a relatively low humidity contributed to the early-age strength improvement. The interaction of cement hydration and AE demulsification was investigated using microimage and laboratory experiments. The results show that AE particles were easy to cluster because of the negative ions released by cement hydration. AE delayed the early cement hydration but improved the later intensity of cement hydration. The coupling effect of AE and cement resulted in higher early-age strength than those of the mixtures only with cement or only with AE. The results presented in this work are expected to give guidance for preparing a CRAM with high early-age strength.
机译:据报道,冷再生沥青混合物(CRAM)能够提供一种更清洁的方法来恢复损坏的沥青路面。这项工作使用含有乳化沥青(Ae)和水泥的CrAM来研究通过考虑混合物组合物,包括AE和水泥的类型和AE,水泥和水泥的含量来研究提高其早期强度的方法。还涉及温度和湿度的固化条件。结果表明,应仔细设计该混合物以确定最佳AE和水分含量。此外,高水泥含量有助于提高早期强度。通过改变固化环境,发现提高固化温度并施加相对低的湿度导致早期强度提高。使用微图和实验室实验研究了水泥水化和AE破乳的相互作用。结果表明,由于水泥水合水合释放的负离子,AE颗粒易于簇。 AE延迟了早期水泥水化,但改善了水泥水合的后来强度。 Ae和水泥的偶联效果导致早期的早期强度高于水泥或仅与AE的混合物。预计这项工作中提出的结果将为制备具有高早期强度的枯萎作用的指导。

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  • 来源
    《Advances in civil engineering》 |2019年第8期|7274204.1-7274204.10|共10页
  • 作者单位

    Cent S Univ Sch Civil Engn Changsha 410075 Hunan Peoples R China;

    Cent S Univ Sch Traff & Transportat Engn Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China;

    Nanjing Xingyou Transportat Technol Co Ltd Nanjing 211100 Jiangsu Peoples R China;

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