...
首页> 外文期刊>Civil Engineering >Monitoring permeability potential of hot mix asphalt via binary aggregate packing principles correlated with Bailey ratios and porosity principles
【24h】

Monitoring permeability potential of hot mix asphalt via binary aggregate packing principles correlated with Bailey ratios and porosity principles

机译:通过与贝利比和孔隙率原理相关的二元集料填充原理监测热拌沥青的渗透潜力

获取原文
获取原文并翻译 | 示例
           

摘要

Asphalt mix designs tend to optimise the load transfer via aggregate skeletons as main mechanism to provide rut resistance, often to the detriment of durability. Permeability, as a significant durability indicator, is more difficult to measure in the field than in the laboratory. Voids in the asphalt mix have a critical zone where an increase in voids is exponentially linked to permeability. This zone is where voids start to become increasingly interconnected. The aggregate grading envelope characteristics can provide an indication of the interconnectedness of the voids to enhance quality control. New rational Bailey Method Ratios (BMRs) were defined with contiguous aggregate fractions in the numerator and denominator. This allows also for porosity calculation using the Dominant Aggregate Size Range (DASR) method. The Binary Aggregate Packing (BAP) triangle porosity diagrams provide insight into the link between porosity and interconnected voids. The wall and the loosening effects create additional porosity (voids) with increased probability of interconnectedness. Clear threshold zones of interconnected voids can be determined with BAP coarse/fine mass ratios. The latter is the inverse of the rational BMRs. It allows for simple spreadsheet calculations of porosity and coarse/fine mass ratio as a screening tool for probable permeability via benchmark analysis. Reworked data sets demonstrated how the inverse of BMRs could show potential for interconnectedness of voids and, therefore, permeability propensity.
机译:沥青混合料设计倾向于通过骨料骨架作为主要机制来优化载荷传递,以提供抗车辙性,通常会损害耐久性。作为重要的耐久性指标,渗透性在现场比在实验室中更难测量。沥青混合料中的空隙有一个关键区域,空隙的增加与渗透率成指数关系。这个区域是空隙开始变得越来越相互联系的地方。骨料的分级包络特性可以提供空隙相互连接的指示,以增强质量控制。通过分子和分母中连续的聚合分数定义了新的有理Bailey方法比率(BMR)。这也允许使用优势骨料粒度范围(DASR)方法进行孔隙度计算。二进制骨料堆积(BAP)三角形孔隙率图使您可以洞察孔隙率与互连孔隙之间的联系。壁和松散效应会产生额外的孔隙(空隙),并增加相互连接的可能性。可以使用BAP粗/细质量比确定互连空隙的清晰阈值区域。后者是有理BMR的逆。它允许通过简单的电子表格计算孔隙率和粗/细质量比,作为通过基准分析确定可能渗透率的筛选工具。重做的数据集证明了BMR的反函数如何显示出孔隙相互连接的潜力,并因此显示出渗透率的倾向。

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