煤粉、木粉灰在沥青混凝土中替代常规填料的性能评价

R. Akter, M. Hossain, Md. Shibly Anwar, Kalimur Rahman
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引用次数: 3

摘要

矿物填料对热拌沥青的马歇尔性能起着重要作用。本文的目的是评估两种矿物(煤尘和木粉灰)用作沥青混凝土填料的适用性和有效性。x射线荧光化学成分测试表明,该矿石中SiO2、Fe2O3和Al2O3含量较高,因此我们选择煤粉和木粉灰分作为矿物填料进行进一步研究。采用不同比例(即4%-8%)的煤粉、木粉灰和常规石粉填料制备了90个圆柱形马歇尔试件,以评估沥青混凝土混合料中单个填料的性能。然后,分析体积特性,如密度、稳流试验、空隙率和矿物集料空隙率,以评价每个样品的有效性,然后找出最佳沥青含量。最后,确定了每种填料的最佳沥青含量,随后,再次检查马歇尔性能,以评估混合料中满足所有标准的最佳填料含量。两种填料的总体马歇尔性能都在可接受的范围内。煤粉的最佳沥青掺量高于木粉灰分和石粉灰分,但木粉灰分的耐久性优于煤粉灰分。所有的混合物都被发现具有更好的抗变形、抗疲劳和抗湿气损伤;4%的煤尘和6%的木粉灰比其他百分比更符合马歇尔标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of coal dust and wood powder ash as alternates of conventional filler in the asphalt concrete
Mineral fillers provide a significant role in the Marshall properties of hot mix asphalt for paving applications. The article's goal is to assess the suitability and effectiveness of two minerals (coal dust and wood powder ash) used as fillers in asphalt concrete. Chemical composition test using X-ray fluorescence indicated a high content of SiO2, Fe2O3, and Al2O3, which encouraged us to select the coal dust and wood powder ash as mineral fillers for further investigation. A total of 90 cylindrical Marshall Specimens, made with different percentages (i.e., 4%-8%) of coal dust, wood powder ash, and conventional stone dust filler were prepared to assess the performance of individual filler within the asphalt concrete mix. And after that, volumetric characteristics such as density, stability-flow test, air void, and voids in mineral aggregates have been analyzed to evaluate the effectiveness of every sample and, afterward, to find out the optimum asphalt content. Finally, the optimum asphalt content for every filler material was ascertained, and subsequently, Marshall properties were checked again to assess the optimum filler content in the mix that satisfy all the standard criteria. The overall Marshall properties for both fillers were within the acceptable limits. Though the optimum asphalt content was higher for coal dust than wood powder ash and stone dust, the wood powder ash showed better durability than coal dust. All mixtures have been found to have better resistance to deformation, fatigue, and moisture-induced damages; however, 4% coal dust and 6% wood powder ash satisfied most of the Marshall criteria than other percentages.
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