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EVALUATION OF AGING CHARACTERISTICS OF MODIFIED ASPHALT MIXTURES

机译:改性沥青混合料的老化特性评估

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A laboratory investigation using typical Florida dense-graded and open-graded mixtures was conducted to evaluate the effects of a few promising modifiers on the long-term aging characteristics of asphalt mixtures. Six types of modifiers including gilsonite, carbon black, fine ground tire rubber (GTR-80), styrene-butyiene-rubber (SBR), ethylene vinyl acetate (EVA) and styrene-ethylene-butylene-styrene (SEBS) were used in this study. These modifiers were blended with AC-30, AC-20, and AC-5 base asphalts to produce a total of ten modified asphalts. These ten modified asphalt blends and the unmodified AC-30 were used to make Florida type S-1 structural course and type FC-2 friction course asphalt mixtures. These mixtures were compacted into Marshall specimens for age hardening and subsequent testing. A total of 416 compacted modified and unmodified asphalt mixture specimens were subjected to a forced-draft oven aging process for 90 days at 60 ℃ (140-℉), and natural sunlight for 6 months to simulate the long-term aging effects on these mixtures. These aged and unaged asphalt mixtures were evaluated by (1) resilient modulus tests at 5 and 25 ℃ (41 and 77 ℉) and (2) indirect tensile tests at 5 and 25 ℃ (41 and 77 ℉). The effects of cycle frequency used in the resilient modulus tests were also assessed. The test results indicate that the modified asphalt mixtures appear to have more pronounced delayed elastic behavior as compared with that of the unmodified asphalt mixtures. The fracture energy, which is characterized by means of the area of stress-strain curve, indicated that the modified binders using a base asphalt of AC-30 tend to be too brittle as they harden further with time. However, modified binders using a base asphalt.of AC-5 appear to be softer than shat of conventional AC-30 under typical Florida conditions.
机译:进行了使用典型的佛罗里达高密度和高梯度混合物的实验室研究,以评估一些有前途的改性剂对沥青混合物的长期老化特性的影响。在此使用了六种类型的改性剂,包括硅灰石,炭黑,细磨轮胎橡胶(GTR-80),丁苯橡胶(SBR),乙烯乙酸乙烯酯(EVA)和苯乙烯-乙烯-丁烯-苯乙烯(SEBS)研究。将这些改性剂与AC-30,AC-20和AC-5基础沥青混合,以生产总共十种改性沥青。这十种改性沥青共混物和未改性AC-30用于制造佛罗里达州的S-1型结构层和FC-2型摩擦层沥青混合物。将这些混合物压制成马歇尔试样,以进行时效硬化和随后的测试。总共416个压实的改性和未改性沥青混合料样品在60℃(140-℉)下经受强制通风烤箱老化90天,并在自然阳光下老化6个月,以模拟这些混合物的长期老化效果。这些老化和未老化的沥青混合料通过(1)在5和25℃(41和77℉)下的弹性模量测试和(2)在5和25℃(41和77℉)下的间接拉伸试验进行评估。还评估了弹性模量测试中使用的循环频率的影响。试验结果表明,与未改性沥青混合物相比,改性沥青混合物似乎具有更明显的延迟弹性行为。通过应力-应变曲线的面积表征的断裂能表明,使用AC-30基础沥青的改性粘合剂随着时间的推移进一步变硬,因此往往太脆。但是,在典型的佛罗里达州条件下,使用AC-5的基础沥青改性的粘结剂似乎比常规AC-30的粘结剂软。

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