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Rheological Behavior of Asphalt-Rubber Binders Modified With Shale-Oil Residue and Polyphosphoric Acid

机译:页岩油渣和多磷酸改性的沥青-橡胶粘合剂的流变行为

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摘要

The objective of this paper is to assess the effects of adding two modifiers of different chemical nature on the rheological behavior of asphalt-rubber binders: the shale-oil residue and the polyphosphoric acid. Four modified asphalt-rubbers were prepared: asphalt-rubber-PPA (18 % crumb rubber+ 1 % PPA), asphalt-rubber-oil (18 % rubber+ 10 % shale-oil residue), asphalt-rubber-oil-PPA-1 (18 % rubber + 10 % oil + 1 % PPA) and asphalt-rubber-oil-PPA-2 (9 % rubber+ 5 % oil+ 0.5 % PPA). A reference asphalt-rubber was prepared using 18 % crumb rubber. The samples were submitted to oscillatory-shear tests to obtain data (complex modulus, G*, and phase angle, 8) to construct master curves. Compared to the base asphalt binder, the pure asphalt-rubber improves the rutting and strain-controlled fatigue resistances. The addition of 1 % PPA enhances even more the rutting resistance and improves slightly the fatigue resistance below 20℃. The most substantial increase in fatigue resistance is obtained when 10 % oil is added to the pure asphalt-rubber, but its rutting resistance is drastically reduced. Mixtures 1 (18 % rubber+ 10 % oil+ 1 % PPA) and 2 (18 % rubber + 5 % oil + 0.5 % PPA) have lower rutting resistance compared to the base asphalt-rubber, but only mixture 1 has higher fatigue resistance. Compared to the base asphalt binder, all modified asphalt-rubber binders present higher G*/sinδ values (at all rutting temperatures) and lower G*sinδ values (only below 20℃) when traffic speed reduces. Taking this evidence into account, the asphalt-rubber and the asphalt-rubber-PPA are the most appropriate. Although shale-oil residue has shown opposite results at intermediate and high pavement temperatures (enhancing the fatigue resistance and reducing the rutting resistance), it is able to reduce the viscosity of the asphalt-rubber, enhancing the workability of the HMA mixes during construction.
机译:本文的目的是评估添加两种化学性质不同的改性剂对沥青-橡胶粘合剂的流变行为的影响:页岩油渣和多磷酸。制备了四种改性沥青橡胶:沥青橡胶-PPA(18%的碎橡胶+ 1%PPA),沥青橡胶-油(18%的橡胶+ 10%页岩油残渣),沥青-橡胶-油-PPA-1( 18%的橡胶+ 10%的油+ 1%的PPA)和沥青-橡胶-油-PPA-2(9%的橡胶+ 5%的油+ 0.5%PPA)。使用18%的碎屑橡胶制备参考沥青橡胶。将样品进行振荡剪切测试,以获得数据(复数模量G *和相角8)以构建主曲线。与基础沥青粘合剂相比,纯沥青橡胶改善了车辙和应变控制的疲劳强度。添加1%PPA可以进一步提高耐车辙性,并略微改善20℃以下的耐疲劳性。当在纯沥青橡胶中添加10%的油时,抗疲劳性得到了最大程度的提高,但是其抗车辙性却大大降低了。与基础沥青橡胶相比,混合物1(18%橡胶+ 10%油+ 1%PPA)和2(18%橡胶+ 5%油+ 0.5%PPA)的耐车辙性较低,但只有混合物1具有更高的耐疲劳性。与基础沥青粘合剂相比,当交通速度降低时,所有改性沥青橡胶粘合剂的G * /sinδ值较高(在所有车辙温度下),而G *sinδ值较低(仅在20℃以下)。考虑到这一证据,沥青橡胶和沥青橡胶-PPA是最合适的。尽管页岩油残留物在中等和较高的路面温度下表现出相反的结果(增强了抗疲劳性并降低了抗车辙性),但它能够降低沥青橡胶的粘度,从而提高了HMA混合料在施工期间的可加工性。

著录项

  • 来源
    《Journal of testing and evaluation》 |2013年第5期|719-728|共10页
  • 作者单位

    Dept. of Transports, Engineering School of Sao Carlos, Univ. of Sao Paulo (STT-EESC-USP), Av. Trabalhador Sao-Carlense, 400, Sao Carlos, SP, CEP 13560-970, Brazil;

    Dept. of Transports, Engineering School of Sao Carlos, Univ. of Sao Paulo (STT-EESC-USP), Av. Trabalhador Sao-Carlense, 400, Sao Carlos, SP, CEP 13560-970, Brazil;

    Dept. of Transports, Engineering School of Sao Carlos, Univ. of Sao Paulo (STT-EESC-USP), Av. Trabalhador Sao-Carlense, 400, Sao Carlos, SP, CEP 13560-970, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    asphalt-rubber; shale-oil residue; polyphosphoric acid;

    机译:沥青橡胶页岩油渣;多磷酸;
  • 入库时间 2022-08-17 13:33:57

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