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橡胶和SBS对排水沥青混合料性能影响的试验研究 被引量:13
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作者 刘梦梅 韩森 +2 位作者 任万艳 Bahram Shirini reza imaninasab 《中外公路》 北大核心 2018年第3期269-274,共6页
排水沥青路面(PA)具有良好的排水和降噪性能,但相对于密级配沥青混合料,其抗车辙能力、抗疲劳与抗水损害等性能较差。为评价橡胶颗粒(CR)对排水沥青路面性能的影响,以普通排水沥青混合料与5%SBS改性排水沥青混合料为对照组,研究了CR掺量... 排水沥青路面(PA)具有良好的排水和降噪性能,但相对于密级配沥青混合料,其抗车辙能力、抗疲劳与抗水损害等性能较差。为评价橡胶颗粒(CR)对排水沥青路面性能的影响,以普通排水沥青混合料与5%SBS改性排水沥青混合料为对照组,研究了CR掺量为10%、15%、20%橡胶改性排水沥青混合料的抗车辙、抗析漏、抗滑与水稳定性等性能。结果表明:CR和SBS既降低了排水沥青路面的渗透性,也显著提高了抗车辙能力。同时CR还可以提高混合料的初期回弹模量、抗滑性和抗水损害能力,但CR掺量过大会对路面性能产生不利影响。 展开更多
关键词 排水沥青路面 渗透性 回弹模量 水稳定性 抗车辙
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Linear viscoelastic behavior of asphalt binders and mixtures containing very high percentages of reclaimed asphalt pavement
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作者 reza imaninasab Luis LORIA-SALAZAR Alan CARTER 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2023年第8期1211-1227,共17页
The primary aim of this study is to correlate the impact of aggregates,if any,on the viscoelastic behavior of rejuvenated asphalt mixtures containing very high amounts of reclaimed asphalt pavement(RAP)(>50%).First... The primary aim of this study is to correlate the impact of aggregates,if any,on the viscoelastic behavior of rejuvenated asphalt mixtures containing very high amounts of reclaimed asphalt pavement(RAP)(>50%).First,gradation of 100%RAP was rectified,using a modified Bailey method by adding virgin aggregates to achieve two coarse dense-graded and one fine dense-graded blends.Complex modulus test was then performed from−35 to+35℃and 0.01–10 Hz.In addition to performance grade(PG)testing,extracted and recovered binders from different asphalt mixtures underwent shear complex modulus test within−8℃to high temperature PG and frequencies from 0.001 to 30 Hz.Cole−Cole,Black space,complex modulus and phase angle master curves were constructed and ShiftHomothety-Shift in time-Shift(SHStS)transformation was used to compare the linear viscoelastic behavior of asphalt binders and mixtures.The influence of aggregates on the viscoelastic behavior of asphalt mixtures depends on temperature and/or frequency.The role of asphalt binders in the behavior of asphalt mixtures is more pronounced at high temperatures and the effect of the aggregate structure increases as the temperature falls.The maximum difference(60%to 70%)in the viscoelastic behavior of the binder and mixture based on SHStS transformed Cole−Cole curves is within the phase angle of 15°–20°. 展开更多
关键词 RAP complex modulus SHStS transformation REJUVENATION behavior of asphalt binder and mixture
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