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Evaluation of moisture susceptibility of asphalt mixes containing RAP and different types of aggregates and asphalt binders using the surface free energy method

机译:使用表面自由能法评估含RAP和不同类型的集料和沥青结合料的沥青混合料的水分敏感性

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The surface free energy (SFE) measurement of asphalt binder and aggregate is considered a reliable mechanistic framework for evaluating the moisture-induced damage potential of asphalt mixes. In the present study, the SFE method was used to evaluate the effects of asphalt binder type, Reclaimed Asphalt Pavement (RAP) and its amount, and aggregate type on the moisture-induced damage potential of asphalt mixes. The SFE components (non-polar, acid and base) of a PG 64-22 and a PG 76-28 (polymer-modified) asphalt binders, blended with different amounts of RAP binder (0%, 10%, 25% and 40%) were measured in the laboratory using a Dynamic Contact Angle (DCA) analyzer. Also, the SFE components of six types of aggregates, namely limestone, rhyolite, sandstone, granite, gravel, and basalt were used in this study. The SFE components of limestone and rhyolite aggregates were measured using a Universal Sorption Device (USD), while those of the sandstone, granite, gravel, and basalt aggregates were obtained from the literature. The energy ratio parameters estimated based on the spreading coefficient, the work of adhesion, and the work of debonding were used to assess the moisture-induced damage potential of different combinations of asphalt binders and different RAP binder contents and aggregates. The SFE test results indicated that the acid SFE component of PG 64-22 and PG 76-28 asphalt binders increase with the addition of RAP binder, while the base SFE component remains almost unchanged. Also, the wettabil-ity and the work of adhesion of both PG 64-22 and PG 76-28 asphalt binders over different types of aggregates increased with an increase in RAP content (by 25% and more). Based on the energy ratio parameters, it was found that the resistance to moisture-induced damage increased with an increase in RAP content for both PG 64-22 and PG 76-28 asphalt binders and all types of aggregates, specifically when higher RAP contents were used. Moreover, it was found that the higher the total SFE of the aggregates, the lower the energy ratio parameter values. Therefore, a high total SFE component of aggregate may result in a high moisture-induced damage potential of the mix. The results presented herein are expected to be helpful in mechanistically assessing the moisture-induced damage potential of asphalt mixes, produced with polymer-modified and non-polymer-modified asphalt binders, containing RAP.
机译:沥青结合料和集料的表面自由能(SFE)测量被认为是评估沥青混合料因水分引起的潜在破坏的可靠机制。在本研究中,使用SFE方法评估沥青结合料类型,再生沥青路面(RAP)及其用量和集料类型对水分引起的沥青混合料破坏潜力的影响。 PG 64-22和PG 76-28(聚合物改性)沥青粘合剂的SFE组分(非极性,酸和碱),与不同量的RAP粘合剂(0%,10%,25%和40)混合%)是在实验室中使用动态接触角(DCA)分析仪测量的。此外,本研究中还使用了六种骨料的SFE成分,即石灰石,流纹岩,砂岩,花岗岩,砾石和玄武岩。使用通用吸附装置(USD)测量了石灰石和流纹岩骨料的SFE成分,而从文献中获得了砂岩,花岗岩,砾石和玄武岩骨料的SFE成分。根据铺展系数,附着力和脱胶作用估算的能量比参数用于评估沥青结合料和RAP结合料含量及集料的不同组合的湿气导致的破坏潜能。 SFE测试结果表明,PG 64-22和PG 76-28沥青粘结剂的酸性SFE组分随着RAP粘结剂的添加而增加,而基础SFE组分几乎保持不变。同样,随着RAP含量的增加(25%或更多),PG 64-22和PG 76-28沥青粘合剂在不同类型的骨料上的润湿性和粘附力也随之增加。根据能量比参数,发现对于PG 64-22和PG 76-28沥青粘合剂以及所有类型的集料,RAP含量的增加,对湿气造成的破坏的抵抗力都会增加,特别是当RAP含量较高时用过的。此外,发现骨料的总SFE越高,能量比参数值越低。因此,骨料中较高的总SFE成分可能导致混合物因水分引起的潜在损坏。预期本文提供的结果有助于机械评估由含RAP的聚合物改性和非聚合物改性沥青粘合剂生产的沥青混合料的湿气诱导的破坏潜力。

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