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首页> 外文期刊>American journal of engineering and applied sciences >Use of Surface Energy to evaluate Adhesion of Bituminous Crack Sealants to Aggregates | Science Publications
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Use of Surface Energy to evaluate Adhesion of Bituminous Crack Sealants to Aggregates | Science Publications

机译:利用表面能评估沥青裂缝密封胶对骨料的粘附力科学出版物

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> Problem statement: The performance of bituminous sealants in the field is partly controlled by properties and strength of the sealant-aggregate interface. The thermodynamic work of adhesion represents energy required for reversible separation of the two materials at the interface. The study of fracture includes the energy required for both reversible and irreversible processes during separation. Excess of work of facture over work of adhesion represents the energy consumed by irreversible processes in the specimen during loading and fracture. In addition, adhesion strength is related to the properties of constitutive components. Approach: The objective of this study was to measure or predict adhesion of hot-poured bituminous-based sealant to aggregates of different chemical composition. In order to accomplish, the study of fracture and the thermodynamic work of adhesion were estimated for 14 hot-poured bituminous-based sealants with two types of aggregate: Limestone and quartzite. The work of adhesion for each sealant-aggregate system was calculated from the contact angle measurements of system components at corresponding sealant installation temperature. Results: In general, limestone showed better adhesion to hot-poured crack sealant than quartzite. Interfacial parameters such as contact angles and surface tensions were successfully used to differentiate between sealants. Conclusion/Recommendation: The findings were in agreement with preliminary testing results of 14 sealants using a newly developed fixture in the direct-tension testing machine. Provided the sealant has an appropriate viscosity to fill the crack, as the sealant surface tension decreases, its adhesion strength increases.
机译: > 问题陈述:沥青密封剂在现场的性能部分受密封剂-骨料界面的性质和强度控制。粘附的热力学功代表了两种材料在界面处可逆分离所需的能量。断裂的研究包括分离过程中可逆和不可逆过程所需的能量。断裂功超过粘附功表示样品在加载和断裂过程中不可逆过程消耗的能量。另外,粘合强度与组成成分的性质有关。 方法:本研究的目的是测量或预测热浇注的沥青基密封胶对不同化学组成的骨料的粘附性。为了完成这项工作,估算了14种热浇注的沥青基密封胶与两种骨料(石灰石和石英岩)的断裂和热力学研究。根据密封剂安装温度下系统组件的接触角测量值,计算每个密封剂-骨料系统的粘合功。 结果:通常,石灰石对热浇注的裂缝密封胶的粘附性优于石英岩。界面参数(例如接触角和表面张力)已成功用于区分密封胶。 结论/建议:研究结果与在直接拉力试验机中使用新开发的夹具对14种密封胶的初步测试结果一致。只要密封剂具有适当的粘度来填充裂缝,随着密封剂表面张力的降低,其粘合强度就会增加。

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