混合改性和压实方式对沥青混凝土开裂性能的影响

Mohammed A. Abed, A. Abed
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引用次数: 3

摘要

研究了集料级配和聚合物改性对热沥青混合料的间接抗拉强度和静刚度的影响。特别是,通过应用洪德罗斯理论,对ITS测试数据进行了处理,以获得刚度测量值。结果表明,细粒混合料的抗拉强度比粗粒混合料高26.3%。结果表明,Superpave旋转压实机(SGC)压实后的样品ITS比Marshall压实机和碾压机分别提高36.58%和23.1%。采用聚合物改性剂对抗拉强度的影响进行了评价,分别添加4、6、8%的SBS,可使沥青混合料的ITS比未改性沥青混合料提高3.2%、6.14%和13.3%。此外,使用4、6和8%的SBS,碾压细混合料的静刚度分别提高了53.9、209.6和302.4%,SGC压实混合料的静刚度分别提高了58、220和379.3%。此外,SBS使Marshall压实混合料的刚度模量分别提高了52.3、188和295%。混合改性剂可以提高沥青混合料的刚度。结果表明,使用1、2和3%的聚氯乙烯(PVC)可使碾压混合料的刚度增大41.2、199.8%和262.6,使用SGC混合料的刚度增大133.4、212.1和354%,而使用Marshall混合料的刚度增大133.4、189.2和354%。聚合物改性可降低粗、细混合料的压裂指数。
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Effect of Hybrid Modification and Type of Compaction on the Cracking Properties of Asphalt Concrete
This paper focused on evaluating the effect of aggregate gradation and polymer modification on indirect tensile strength (ITS) and the static stiffness for hot asphalt mixtures. In particular, data from ITS tests have been processed to obtain stiffness measurements through the application of Hondros theory. The results showed that fine mixtures had a better tensile strength by 26.3% than the coarse mixtures. The effect of compaction also was examined, the results showed that samples compacted with the Superpave gyratory compactor (SGC) had an enhancement in ITS by 36.58 and 23.1% in comparison with Marshall and roller compactor respectively. Polymer modifiers were used to estimate their effect on tensile strength, adding 4, 6, and 8% of Styrene-Butadiene-Styrene (SBS), which can rise the ITS by 3.2,6.14 and 13.3% of the non-modified asphalt mixture. Furthermore, using 4, 6, and 8 percent of SBS could increase static stiffness by 53.9, 209.6, and 302.4% respectively for roller compacted fine mixes and 58, 220, and 379.3% for SGC compacted mixes. Furthermore, SBS raised the stiffness modulus by 52.3, 188, and 295% for Marshall compacted mixes. Using hybrid modifier can improve the stiffness of the asphalt mixture. However, The results indicate that using 1, 2 and 3% polyvinyl chloride (PVC) can magnify the stiffness of mixtures by 41.2, 199.8% and 262.6 for roller compacted mixtures and 133.4, 212.1 and 354% for SGC compacted mixtures, whereas there is a stringent increasing by 133.4, 189.2 and 354% for Marshall compacted mixes. Otherwise, polymer-modification can decrease the fracturing index for coarse and fine mixtures.
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