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Electrical Conductivity and Rheological Properties of Asphalt Binder Containing Graphite

机译:含石墨沥青粘结剂的电导率和流变特性

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Asphalt generally behaves as an insulator. The addition of graphite can produce electrically conductive asphalt, which can be further manufactured as multifunctional asphalt concrete. The present study investigated the effect of graphite on the electrical conductivity and rheological characteristics of base asphalt. A novel electrical resistivity measuring method of asphalt binder was also introduced in detail. Various binder tests, including penetration, ductility, softening point, and dynamic shear rheometer (DSR) tests, were utilized to determine rheological properties of asphalt binder. Experimental results indicated that the conductivity of asphalt binder improved with the increasing content of graphite. Moreover, asphalt binder exhibited improved viscoelastic response and resistance to rutting due to the addition of graphite. However, the low-temperature performance of graphite modified asphalt was not encouraging from the ductility test. Therefore, asphalt binder containing graphite is promising to become novel road functional materials to meet both requirements of electrical conductivity and road properties.
机译:沥青通常表现为绝缘体。石墨的添加可以产生导电沥青,其可以被进一步制造为多功能沥青混凝土。本研究研究了石墨对基础沥青的电导率和流变特性的影响。还详细介绍了一种新型的沥青结合料电阻率测量方法。利用各种粘合剂测试,包括渗透性,延展性,软化点和动态剪切流变仪(DSR)测试,来确定沥青粘合剂的流变性能。实验结果表明,沥青粘结剂的电导率随石墨含量的增加而提高。此外,由于添加了石墨,沥青粘合剂表现出改善的粘弹性响应和抗车辙性。然而,从延展性测试来看,石墨改性沥青的低温性能并不令人鼓舞。因此,含有石墨的沥青粘合剂有望成为新型的道路功能材料,以同时满足导电性和道路性能的要求。

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