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Adhesion between Asphalt and Recycled Concrete Aggregate and Its Impact on the Properties of Asphalt Mixture

机译:沥青和再生混凝土骨料之间的粘附及其对沥青混合料性质的影响

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摘要

To study and evaluate the adhesion between recycled concrete aggregate and asphalt, the contact angles (CAs) between droplet (water and ethanol) and recycled concrete aggregate (RCA), natural aggregates, and solid bitumen (matrix asphalt, SBS modified asphalt) were tested via the sessile drop method with an optical microscope. The surface free energy was then calculated. The CAs between hot asphalt and RCA and natural aggregates were tested via the hanging slice method. The adhesive energy between asphalt and RCA and natural aggregates were calculated based on the test results of the surface free energy and CAs. Then, the influence of RCA on the water stability and fatigue performance of the asphalt mixture was analyzed by testing the water stability and fatigue properties of hot mix asphalts containing RCA (HMA-RCA) with different aggregates and RCA dosages. The surface energy of the various aggregates and the CAs between aggregates and asphalts were sorted as follows: Granite > RCA > serpentinite > limestone. The surface energy and CA of RCA were very close to that of serpentinite. The adhesive energy between various aggregates and asphalt were sorted as follows: Limestone > serpentinite > RCA > granite. The adhesive energy between RCA and asphalt was also very close to that of serpentinite. The residual Marshall stability, tensile strength ratio, and fatigue performance of the HMA-RCAs were gradually reduced along with the increasing RCA dosage. This effect may be attributed to the fact that the adhesive energy between the RCA and the asphalt was less than that of water and that the asphalt was easily stripped from the RCA surface. Excessive RCA content in the aggregate can lead to excessive porosity of the HMA-RCA. The CAs and adhesive energy between RCA and asphalt showed significant effects on the water stability and fatigue performance of HMA-RCA.
机译:研究和评估再生混凝土骨料和沥青之间的粘附,液滴(水和乙醇)和再循环混凝土聚集体(RCA),天然聚集体和固体沥青(基质沥青,SBS改性沥青)之间的接触角(CAS)进行了测试通过具有光学显微镜的术式掉落方法。然后计算表面自由能。通过悬挂切片方法测试热沥青和RCA和自然聚集体之间的CA。基于表面自由能和CAS的测试结果计算沥青和RCA和自然聚集体之间的粘合能量。然后,通过用不同的聚集体和RCA剂量测试含有RCA(HMA-RCA)的热混合沥青的水稳定性和疲劳性能来分析RCA对沥青混合物的水稳定性和疲劳性能的影响。各种聚集体和聚集体之间的CA的表面能,如下分选:花岗岩> RCA>蛇形素>石灰石。 RCA的表面能和Ca非常接近蛇形素。各种聚集体和沥青之间的粘合能量如下分选:石灰石>蛇形素> RCA>花岗岩。 RCA和沥青之间的粘合能量也非常接近蛇形岩的粘合剂。随着RCA剂量的增加,HMA-RCA的残留马歇尔稳定性,拉伸强度比和疲劳性能逐渐减少。这种效果可能归因于RCA和沥青之间的粘合能量小于水的粘合能量,并且沥青容易从RCA表面汽提。聚集体中过量的RCA含量会导致HMA-RCA的过度孔隙率。 RCA和沥青之间的CA和粘合剂能量对HMA-RCA的水稳定性和疲劳性能进行了显着影响。

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