{"title":"Effect of Filler and Binder Contents on Air Voids in Hot-Mix Asphalt for Road Pavement Construction","authors":"Isooba John, M. Bangi, M. Lawrence","doi":"10.4236/ojce.2021.113016","DOIUrl":null,"url":null,"abstract":"Filler \nand binder make up a small proportion of bituminous mixtures, hence they are \nconsidered as important ingredients of mixtures. Sometimes due to equipment \nerror during production, some mixtures retain extra or a reduced amount of \nfiller or binder as compared to the design mix formula. It is thought that the \npoor performance of bituminous mixtures is a result of inadequate proportioning \nof materials and the use of inappropriate compaction tools. This study was \nintended to appreciate the influence of contents of filler and binder in \nrelation to durability in asphalt mixtures. Filler used was crushed stone \npassing 0.075 mm sieve, while the binder was 35/50 penetration grade. Several \ntrial mixes were prepared following Ugandan specifications for Road and Bridge \nWorks, and the Asphalt Institute in MS-2. Marshall design method was used, \nstudying volumetric properties with an average stability value of 22.3 kN, \naverage flow value of 3.7 mm, VA of 4.4%, VFB of 69.3%, and VMA of 14.2%. Also, \ncompaction of mixtures to assess its performance at optimum filler and binder \ncontents was done. Compaction was done using an Automatic Impact Hammer, a \nVibrating Hammer, and a Superpave Gyratory compactor aimed at simulating \nsecondary compaction by traffic and assessing the retained air voids which was \n3.3%, 1.3%, and 0.7% respectively. Generally, in bituminous mixtures when a \nvibrating hammer or a gyratory compactor is recommended for compaction, coarser \nmixes would be the best choice.","PeriodicalId":302856,"journal":{"name":"Open Journal of Civil Engineering","volume":"12 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-07-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"4","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Open Journal of Civil Engineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4236/ojce.2021.113016","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 4
Abstract
Filler
and binder make up a small proportion of bituminous mixtures, hence they are
considered as important ingredients of mixtures. Sometimes due to equipment
error during production, some mixtures retain extra or a reduced amount of
filler or binder as compared to the design mix formula. It is thought that the
poor performance of bituminous mixtures is a result of inadequate proportioning
of materials and the use of inappropriate compaction tools. This study was
intended to appreciate the influence of contents of filler and binder in
relation to durability in asphalt mixtures. Filler used was crushed stone
passing 0.075 mm sieve, while the binder was 35/50 penetration grade. Several
trial mixes were prepared following Ugandan specifications for Road and Bridge
Works, and the Asphalt Institute in MS-2. Marshall design method was used,
studying volumetric properties with an average stability value of 22.3 kN,
average flow value of 3.7 mm, VA of 4.4%, VFB of 69.3%, and VMA of 14.2%. Also,
compaction of mixtures to assess its performance at optimum filler and binder
contents was done. Compaction was done using an Automatic Impact Hammer, a
Vibrating Hammer, and a Superpave Gyratory compactor aimed at simulating
secondary compaction by traffic and assessing the retained air voids which was
3.3%, 1.3%, and 0.7% respectively. Generally, in bituminous mixtures when a
vibrating hammer or a gyratory compactor is recommended for compaction, coarser
mixes would be the best choice.
填料和粘结剂在沥青混合料中所占比例很小,因此被认为是混合料的重要组成部分。有时由于生产过程中的设备错误,与设计混合配方相比,某些混合物保留了额外或减少的填料或粘结剂量。据认为,沥青混合料的性能差是由于材料比例不足和使用不适当的压实工具造成的。本研究旨在了解填料和粘结剂含量对沥青混合料耐久性的影响。填料为通过0.075 mm筛的碎石,粘结剂为35/50渗透等级。按照乌干达道路和桥梁工程规范和MS-2沥青研究所的规范,准备了几种试验混合料。采用Marshall设计方法,研究了平均稳定值为22.3 kN,平均流量为3.7 mm, VA为4.4%,VFB为69.3%,VMA为14.2%的体积性能。此外,还对混合物进行了压实,以评估其在最佳填料和粘结剂含量下的性能。使用自动冲击锤、振动锤和Superpave旋转压实机进行压实,旨在模拟交通的二次压实,并评估保留空隙率,分别为3.3%、1.3%和0.7%。通常,在沥青混合物中,当建议使用振动锤或旋转压实机进行压实时,较粗的混合物将是最佳选择。