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首页> 外文期刊>Advances in civil engineering >Evaluating the Surface Free Energy and Moisture Sensitivity of Warm Mix Asphalt Binders Using Dynamic Contact Angle
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Evaluating the Surface Free Energy and Moisture Sensitivity of Warm Mix Asphalt Binders Using Dynamic Contact Angle

机译:使用动态接触角评估温热混合物沥青粘合剂的表面自由能和湿度敏感性

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摘要

From the environmental conservation perspective, warm mix asphalt is more preferable compared to hot mix asphalt. This is because warm mix asphalt can be produced and paved in the temperature range 20–40°C lower than its equivalent hot mix asphalt. In terms of cost-effectiveness, warm mix asphalt can significantly improve the mixture workability at a lower temperature and thus reduce greenhouse gas emissions, to be environment friendly. However, the concern, which is challenging to warm mix asphalt, is its susceptibility to moisture damage due to its reduced production temperature. This may cause adhesive failure, which could eventually result in stripping of the asphalt binder from the aggregates. This research highlights the significance of Cecabase warm mix additive to lower the production temperature of warm mix asphalt and improvise the asphalt binder adhesion properties with aggregate. The binders used in the preparation of the test specimen were PG-64 and PG-76. The contact angle values were measured by using the dynamic Wilhelmy plate device. The surface free energy of Cecabase-modified binders was then computed by developing a dedicated algorithm using the C++ program. The analytical measurements such as the spreadability coefficient, work of adhesion, and compatibility ratio were used to analyze the results. The results inferred that the Cecabase improved the spreadability of the asphalt binder over limestone compared to the granite aggregate substrate. Nevertheless, the Cecabase-modified binders improved the work of adhesion. In terms of moisture sensitivity, it is also evident from the compatibility ratio indicator that, unlike granite aggregates, the limestone aggregates were less susceptible to moisture damage.
机译:从环境保护的角度来看,与热混合物沥青相比,更优选温热混合物沥青。这是因为可以在20-40°C的温度范围内生产和铺设温暖的混合物沥青,而不是其等同的热混合物沥青。在成本效益方面,温热的沥青可以显着提高较低温度的混合物的可加工性,从而减少温室气体排放,为环境友好。然而,对温暖混合沥青挑战的担忧是由于其生产温度降低,因此对湿气损坏的敏感性。这可能导致粘合剂失效,这最终可能导致来自聚集体的沥青粘合剂的汽提。该研究突出了辛巴酶温混合添加剂的重要性,以降低温热混合物沥青的生产温度,并通过聚集体即可改善沥青粘合剂粘附性能。制备试样的粘合剂是PG-64和PG-76。通过使用动态WILHELMY板装置测量接触角值。然后通过使用C ++程序开发专用算法来计算Cecabase改性粘合剂的表面自由能。使用铺展系数,粘附性和相容比的分析测量来分析结果。结果推断,与花岗岩骨料衬底相比,CECABASE改善了沥青粘合剂在石灰石上的铺展性。然而,Cecabase改性粘合剂改善了粘附的工作。在水分敏感性方面,从相容比指示剂中也显而易见的是,与花岗岩聚集体不同,石灰石聚集体易受水分损伤的影响。

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