集料级配和填料含量对改性彩色热混合沥青抗车辙性能的影响

Samer Ali Naji, A. Abed
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引用次数: 1

摘要

由于高温和过度的交通负荷,车辙被认为是伊拉克道路上最常见的灾难。因此,利用聚合物改性粘结剂来提高路面性能是十分必要的。本文的目的是评价骨料级配和填料含量对彩色热混合沥青车辙形成的影响。以氧化铁为填料对HMA进行着色,制得红色HMA。采用两种不同类型填料的细、粗共混料,氧化铁用于CHMA,石灰石用于常规HMA,两种填料含量分别为6%和10%。采用纯沥青(AC 40-50)和改性沥青(AC 40-50 + 4%SBS)。通过添加4%苯乙烯-丁二烯-苯乙烯- SBS(按纯沥青重量计(AC 40-50))的试验,将性能等级从PG(64-16)提高到PG(76-16)[1]和[2]。采用车轮跟踪试验对CHMA车辙深度进行评估。试验结果表明,在细料和粗料混合料中,氧化铁与纯沥青混合料比石灰石混合料(混合周期达到25 mm车辙深度)分别增加200和400个破坏荷载循环。此外,级配的影响表明,在6%石灰石混合物中,细料在4000次循环时失效,粗料在1800次循环时失效。将氧化铁含量从6%提高到10%,改性沥青细料和粗料的破坏载荷循环次数分别增加2200次和1200次。掺10%氧化铁改性沥青的细混合料循环次数为7000次,比掺10%填料和掺改性沥青的粗混合料循环次数为4000次的性能最好。无论填料和粘结剂的类型如何,使用氧化铁作为填料的致密混合物比粗混合物表现出更好的抗车辙形成能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Aggregate Gradation and Filler Content on the Rutting Resistance of Modified Colored Hot Mix Asphalt
Rutting is considered as the most generated distress in Iraqi roads as a result of the high temperature and excessive traffic load. So, it is essential to utilize polymer modified binder to increase the performance of pavements. The objective of this paper is to assess the effect of aggregate gradation and filler content on the rutting formation of Colored Hot Mix Asphalt CHMA. The HMA was colored by using iron oxide as filler to produce red HMA. Two blends were used: fine and coarse with two different types of filler iron oxide for CHMA and limestone for conventional HMA with two filler content 6% and 10%. Neat (AC 40-50) and modified asphalt (AC 40-50 + 4%SBS) were used. Tests are held on adding 4% Styrene Butadiene Styrene )SBS( by the weight of neat asphalt (AC 40-50) to raise the performance grade by two grades from PG (64-16) to PG (76-16) [1] and [2]. The wheel tracking test is used to assess the rut depth of the CHMA. The test results showed that the using iron oxide with neat asphalt increase the rut depth resistance by 200 and 400 failure load cycles than mixtures using limestone (cycles that mix reach 25 mm rut depth) for fine and coarse mix respectively. Also, the effect of gradation shows that the fine mixture fails at 4000 cycles while the coarse mixture fails at 1800 cycles for 6% limestone mixtures.  Increasing the iron oxide content from 6% to 10% leads to increase the failure load cycles by 2200 and 1200 cycles for fine and coarse mixture respectively using modified asphalt. The fine mixture with 10% iron oxide using modified asphalt gives the best performance with 7000 cycles than the coarse mixture with 10% filler content and modified asphalt with 4000 cycles. irrespective the filler and type of binder, the dense mixtures using iron oxide as filler exhibit better resistance to rutting formation than coarse mixtures.
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