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Performance Evaluation of Cold In-Place Recycling Asphalt Mixtures Prepared Using Different Recycling Agents, Curing Processes, and Compaction Levels

机译:使用不同的回收剂,固化工艺和压实度制备的现场冷再生沥青混合料的性能评估

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The main objective of this study was to determine the impact of recycling agent, compaction level, and curing process on the rutting and cracking performance of cold in-place recycled (CIR) mixtures prepared using a balanced mix design approach. Eight CIR mixtures were prepared using two binding agents (CSS-1h emulsion and PG 64-22 foamed asphalt), two levels of compaction (30 and 70 gyrations), and two curing temperatures (50 and 140℉). These mixtures were designed at constant dosages of cement (1%) and water (3%). Laboratory performance tests were then conducted on balanced CIR mixtures to evaluate the impact of the recycling agent, compaction level, and curing temperature on CIR rutting performance measures using the Asphalt Pavement Analyzer (APA) and dynamic complex modulus (|E*|) and cracking performance measures using the indirect tensile strength (ITS) and semi-circular bend (SCB) tests. Statistical analysis was also performed on CIR performance measures using ANOVA to evaluate the impact of recycling agent, gyration level, and curing temperature on APA rut depth, dynamic modulus, ITS, and SCB-FE. The performance of these mixtures was then evaluated in terms of rutting susceptibility and cracking resistance. Results showed that the higher compaction level or/and higher curing temperature led to increasing the ability of both emulsion and foamed asphalt CIR mixtures to resist rutting. With regard to cracking, SCB-FE results showed that emulsified asphalt CIR mixtures were better at resisting cracking than foamed asphalt CIR mixtures.
机译:这项研究的主要目的是确定回收剂,压实度和固化工艺对采用平衡混合设计方法制备的冷就地回收(CIR)混合物的车辙和开裂性能的影响。使用两种粘合剂(CSS-1h乳液和PG 64-22泡沫沥青),两种压实度(30和70回转)和两种固化温度(50和140℃)制备了八种CIR混合物。这些混合物是在水泥(1%)和水(3%)的恒定剂量下设计的。然后使用沥青路面分析仪(APA)和动态复数模量(| E * |)对平衡的CIR混合物进行实验室性能测试,以评估回收剂,压实度和固化温度对CIR车辙性能测试的影响。使用间接拉伸强度(ITS)和半圆形弯曲(SCB)测试的性能指标。还使用ANOVA对CIR性能指标进行了统计分析,以评估回收剂,回转水平和固化温度对APA车辙深度,动态模量,ITS和SCB-FE的影响。然后根据车辙敏感性和抗裂性评估这些混合物的性能。结果表明,较高的压实度或/和较高的固化温度导致乳液和泡沫沥青CIR混合物均具有抗车辙的能力。关于开裂,SCB-FE结果表明,乳化沥青CIR混合物比起泡沫沥青CIR混合物具有更好的抗开裂性。

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