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首页> 外文期刊>Journal of materials in civil engineering >Influences on Compaction of Cold Mix Cement Emulsified Asphalt Using the Superpave Gyratory Compaction
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Influences on Compaction of Cold Mix Cement Emulsified Asphalt Using the Superpave Gyratory Compaction

机译:使用超级助剂压实对冷混合物乳化沥青的压实的影响

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摘要

It is well known that cold mix cement emulsified asphalt (CMCEA) exhibits good mechanical performance even when paved at room temperature. In this study, the compactibility and mechanical properties of CMCEA specimens were studied using a Superpave gyratory compactor. To analyze CMCEA compaction dynamics, two indices based on indexes of compaction quality (ICQ) and parameters of the compaction process (PCP) were considered. ICQ included the compressive strength and air voids, while PCP included the compaction energy index and compaction rate. Tests were conducted on CMCEA specimens to estimate the effect of process variables, such as compaction temperature, time interval before compaction, and gyration parameters, on ICQ and PCP. It was determined that CMCEA could be molded satisfactorily at temperatures below 40°C. Experimental results showed that the compressive strength and densification of CMCEA specimens were positively correlated in the range of °C10-40°C and negatively correlated beyond 40°C. Process variables play an important role in controlling the compaction characteristics, such as the compressive strength and air voids. Furthermore, choosing a suitable time interval before compaction (TIBC) at a given compaction temperature helps in saving compaction energy and achieving an appropriate compaction rate. To achieve a CMCEA compressive strength >2.4 MPa and densification>92% at 25°C, as mandated by practical design requirements, the TIBC, number of gyrations, and gyration angle were optimized at 12-35 min, 140-160, and 1.15°, respectively. The method used to determine these parameters and the obtained optimal values serve as a benchmark for actual pavement construction.
机译:众所周知,冷混合水泥乳化沥青(CMCEA)即使在室温下铺设时也表现出良好的机械性能。在该研究中,使用超级波旋转压实机研究了CMCEA标本的可调性和力学性能。为了分析CMCEA压缩动态,考虑了基于压实质量索引(ICQ)和压实过程(PCP)索引的两个指数。 ICQ包括压缩强度和空气空隙,而PCP包括压实能量指数和压实率。在CMCEA标本上进行测试,以估计工艺变量的效果,例如压实温度,压实前的时间间隔,以及在ICQ和PCP上的转换参数。确定CMCEA可以在低于40℃的温度下令人满意地模塑。实验结果表明,CMCEA试样的压缩强度和致密化在°C 10-40℃的范围内呈正相关,并呈负相关,超过40℃。过程变量在控制压缩强度和空隙之类的压缩特性方面发挥着重要作用。此外,在给定压缩温度下选择在压缩(TIBC)之前选择合适的时间间隔有助于节省压实能量并实现适当的压实率。为了在25°C下实现CMCEA压缩强度> 2.4MPa和致密化> 92%,如实际设计要求,TIBC,热量数和血管角度在12-35分钟,140-160和1.15中优化°分别。用于确定这些参数的方法和所获得的最佳值用作实际路面结构的基准。

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  • 来源
    《Journal of materials in civil engineering》 |2021年第6期|04021107.1-04021107.11|共11页
  • 作者单位

    Key Laboratory of Road Construction Technology and Equipment Ministry of Education of PRC Chang'an Univ. South 2nd Ring Rd. Middle Section Xi'an Shaanxi 710064 China;

    School of Mechanical Engineering Xi'an Shiyou Univ. Zhangba East Rd. Xi'an Shaanxi 710065 China;

    Key Laboratory of Road Construction Technology and Equipment Ministry of Education of PRC Chang'an Univ. South 2nd Ring Rd. Middle Section Xi'an Shaanxi 710064 China;

    Key Laboratory of Road Construction Technology and Equipment Ministry of Education of PRC Chang'an Univ. South 2nd Ring Rd. Middle Section Xi'an Shaanxi 710064 China;

    Henan Gaoyuan Maintenance Technology of Highway Co. Ltd. Gaoyuan Rd. No.6 Xinxiang Henan 453003;

    Key Laboratory of Road Construction Technology and Equipment Ministry of Education of PRC Chang'an Univ. South 2nd Ring Rd. Middle Section Xi'an Shaanxi 710064 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cold mix cement emulsified asphalt (CMCEA); Indexes of compaction quality; Parameters of compaction process; Compaction energy index; Compressive strength;

    机译:冷混合物水泥乳化沥青(CMCEA);压实质量指标;压实过程的参数;压实能量指数;抗压强度;

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