首页> 外文期刊>Construction and Building Materials >A feasibility study exploring limestone in porous asphalt concrete: Performance evaluation and superpave compaction characteristics
【24h】

A feasibility study exploring limestone in porous asphalt concrete: Performance evaluation and superpave compaction characteristics

机译:多孔沥青混凝土石灰石探索石灰石的可行性研究:性能评估和超级保管特性

获取原文
获取原文并翻译 | 示例
           

摘要

This study aims to explore the possibility of utilizing limestone in porous asphalt concrete (PAC), targeting to the lower layer of the double-layer porous asphalt pavement. Limestone aggregate, which features relatively lower strength and desirable adhesion with asphalt, is used to replace basalt aggregate in PAC due to the shortage and high price of basalt. Both PAC with limestone and PAC with basalt are formulated with Marshall design method. Engineering performance evaluation verified that in comparison with PAC using basalt, PAC using limestone has less optimum asphalt content, lower Marshall compaction numbers, inferior drainage capacity, superior low-temperature cracking resistance, comparable rutting resistance and moisture stability, while satisfy the specification requirements. Furthermore, Superpave compaction model is employed to simulate the site compaction process. The results demonstrated that Superpave compaction process is divided into initial and over densification stages, in which the voids reduction in PAC with limestone is accelerated compared to that in PAC with basalt. The dynamic modulus of PAC increases with loading frequency, decreases with test temperature, and remarkably increases with gyration numbers. The master curves of dynamic modulus for PAC are constructed, which are approximately consistent for both PACs at equivalent compaction numbers. The tensile strength of PAC is found to increase with gyration numbers and both PACs present comparable tensile strength at the given compaction numbers. It is recommended to compact PAC using limestone with 40 gyrations. Therefore, limestone PAC with appropriate design and compaction parameters is prospective as the lower layer of the double-layer porous asphalt pavement. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本研究旨在探讨利用多孔沥青混凝土(PAC)的石灰石的可能性,靶向双层多孔沥青路面的下层。具有相对较低的强度和与沥青的粘附性具有相对较低的强度和理想的粘合性的石灰石骨料由于玄武岩的短缺和高价而替代PAC中的玄武岩骨料。与Marshall设计方法配制了含有石灰石和玄武岩的PAC。工程性能评估验证,与PAC使用玄武岩相比,使用石灰石的PAC具有较小的最佳沥青含量,降低Marshall压实号,较低的排水能力,较高的低温开裂性,相当的车辙抗性和湿度稳定,同时满足规格要求。此外,使用SuperPave压缩模型来模拟网站压缩过程。结果表明,超级试验加压过程分为初始和过度致密阶段,其中与玄武岩中的PAC相比,含有石灰石的空隙减少的空隙率加速。 PAC的动态模量随装载频率而增加,随着测试温度降低,并且随着环路数而显着增加。构造了PAC的动态模量的主曲线,其对于在等效压实号上的PAC大致一致。发现PAC的拉伸强度随着环旋数而增加,两种PAC在给定压实号上存在相当的拉伸强度。建议使用具有40个热点的石灰石紧凑的PAC。因此,具有适当的设计和压实参数的石灰石PAC是前瞻性的双层多孔沥青路面的下层。 (c)2021 elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号