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Design of asphalt mixes with steel slag aggregates using the Bailey method of gradation selection

机译:钢渣聚集体的沥青混合使用渐变选择设计沥青混合

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It has been reported in the literature that the asphalt mixes containing a high percentage of Steel Slag Aggregates (SSA) are susceptible to high void space. This is one of the major reasons that SSA usage is limited to replacement of either the fine or coarse aggregates fraction, but not both by the road agencies. More void spaces in the asphalt mixes with a higher proportion of SSA can be attributed to the high specific gravity of the coarse aggregate (CA) of SSA and the adoption of weight-based gradation selection for mix design. This issue can be addressed by adopting the volume-based Bailey method. The present paper attempts to provide a framework to design asphalt mixes with a high proportion (up to 100%) SSA with aggregate fractions of varying specific gravity by employing the Bailey method of gradation selection. The study in the paper showed that by adopting the Bailey method for gradation selection, SSA mixes with Voids in Mineral Aggregates (VMA) similar to Natural Aggregate (NA) mixes can be produced despite the significant differences in specific gravities between the fine and coarse aggregate fractions. Test for mechanical properties on asphalt mixes suggested that the resilient modulus of SSA asphalt mixes can be 1.4 to 1.8 times that of NA asphalt mixes. Owing to the high particle strength of SSA combined with the predominantly cubical shape, SSA mixes were found to be relatively more resistant to rutting. Comparisons based on linear elastic analysis and design of hypothetical pavement sections indicate that the fatigue life of pavement with SSA asphalt base layers is comparable with the fatigue life of the pavement with NA asphalt mix bases. It was also observed that the asphalt mixes with SSA aggregates had shown relatively more resistance to the moisture damage. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在文献中据报道,含有高百分比的钢渣聚集体(SSA)的沥青混合物易受高空隙空间的影响。这是SSA使用率仅限于更换精细或粗骨料分数,而不是道路机构的主要原因之一。沥青混合中具有较高比例的SSA的更多空隙的空间可归因于SSA的粗骨料(CA)的高比重和用于混合设计的重量基灰度选择。通过采用基于卷的Bailey方法可以解决此问题。本文试图提供设计沥青混合的框架,该沥青混合具有高比例(高达100%)SSA,通过采用渐变选择的渐变方法来实现具有不同比重的聚集分。本文的研究表明,通过采用渐变选择的Bailey方法,尽管细菌和粗骨料之间的比重显着差异,但可以生产与矿物聚集体(VMA)中的空隙的SSA混合分数。沥青混合物的机械性能试验表明,SSA沥青混合的弹性模量可以是Na沥青混合物的1.4%至1.8倍。由于SSA的高粒子强度与主要的立方体形状相结合,发现SSA混合物相对较耐弦乐。基于线性弹性分析的比较和假设路面部分的设计表明,SSA沥青基层的路面疲劳寿命与Na沥青混合碱的路面疲劳寿命相当。还观察到,与SSA聚集体的沥青混合显示出对水分损伤的耐受性相对较高。 (c)2021 elestvier有限公司保留所有权利。

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