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Evaluation of Cracking Performance for Polymer-Modified Asphalt Mixtures with High RAP Content

机译:高RAP含量的聚合物改性沥青混合料的抗裂性能评估

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Fourteen reclaimed asphalt pavement (RAP) mixtures designed with different combinations of RAP sources, contents (up to 40%) and mixture conditioning levels were evaluated to determine the maximum allowable amount of RAP material in surface courses without jeopardizing pavement cracking performance. Extracted RAP binder was blended with virgin polymer-modified asphalt (PMA) binder at various RAP binder replacement ratios. All blends behaved effectively as PMA binder as they met the multiple stress creep recovery (MSCR) % recovery requirement, and in addition they had satisfactory binder fracture energy density (FED) values. RAP gradation was found to significantly affect the fracture properties of RAP mixtures as it controls the distribution of RAP binder and potentially the degree of blending between virgin and RAP binder. Increased RAP content resulted in stronger (i.e., higher tensile strength) but more brittle (i.e., lower failure strain and lower mixture fracture energy) mixtures. However, after long-term oven aging (LTOA) plus cyclic pore pressure conditioning (CPPC) which was used to simulate long-term field aging conditioning, all RAP mixtures still exhibited dissipated creep strain energy to failure (DCSEf) values above 0.75 kJ/m~3 and energy ratio (ER) values well above 1.0, indicating acceptable cracking performance. It must be emphasized that all RAP mixtures had good gradation characteristics as they all met Superpave design criteria and dominant aggregate size range and the interstitial component (DASR-1C) requirements. Therefore, satisfactory inclusion of up to 40% RAP was acceptable for well-designed PMA mixtures.
机译:对14种再生沥青路面(RAP)混合物进行了设计,这些混合物设计了不同的RAP来源,含量(最高40%)和混合物调理水平组合,以确定表面层中RAP材料的最大允许用量,而不会损害路面的开裂性能。将提取的RAP粘结剂与原始聚合物改性的沥青(PMA)粘结剂以各种RAP粘结剂替代比率混合。所有共混物均符合PMA粘合剂的有效性能,因为它们满足了多重应力蠕变回复率(MSCR)%的恢复要求,此外,它们还具有令人满意的粘合剂断裂能密度(FED)值。发现RAP等级显着影响RAP混合物的断裂性能,因为它控制RAP粘合剂的分布以及潜在的原始和RAP粘合剂之间的混合程度。 RAP含量的增加会导致混合物强度更高(即更高的拉伸强度),但脆性更高(即更低的破坏应变和更低的混合物断裂能)。但是,在经过长期烘箱老化(LTOA)和循环孔隙压力调节(CPPC)(用于模拟长期现场老化调节)之后,所有RAP混合物仍显示出大于0.75 kJ /的耗散蠕变应变破坏能量(DCSEf)值。 m〜3且能量比(ER)值远高于1.0,表明可接受的裂化性能。必须强调的是,所有RAP混合物均符合Superpave设计标准,主要骨料尺寸范围和间隙成分(DASR-1C)要求,因此具有良好的渐变特性。因此,对于设计良好的PMA混合物,令人满意的最高40%的RAP含量是可以接受的。

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