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Use of crumb rubber in lieu of binder grade bumping for mixtures with high percentage of reclaimed asphalt pavement

机译:使用碎橡胶代替粘合剂等级的颠簸,用于高比例再生沥青路面的混合物

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Use of recycled/reclaimed asphalt pavement (RAP) leads to economic as well as environmental benefits. However, increasing the percentage of RAP in a new asphalt pavement may hinder the economic benefits due to the necessity of expensive softer binders used to compensate for RAP stiffening effect. Alternatively, this problem may potentially be overcome by use of another recycled material: crumb rubber (CR). In this study, linear viscoelastic, thermal and fatigue cracking properties of mixtures prepared with different rubberised asphalt binders were compared with the soft binders. The scope of the testing included asphalt mixtures produced from the following binders; (i) devulcanised rubber, (ii) CR terminally blend, (iii) CR wet process, (iv) soft binder (PG 58-34) and (v) base (control) binder (PG 58-28). The results of the fatigue tests indicated that CR-modified asphalt mixtures made with the base binder (PG58-28) outperformed the mixture made with grade bumped (PG58-34) binder. Similar results were observed in low-temperature cracking tests. The results indicated that the CR-modified binders can be used in lieu of grade bumping of binders in high RAP mixtures. In fatigue cracking tests, among the three CR technologies, wet process outperformed terminally blend and devulcanised rubber at high temperatures and high strain levels at low temperatures. At relatively low strain levels, terminally blend was the best performer in low temperature. In low-temperature cracking tests, devulcanised rubber exhibited highest tensile strength, but lowest fracture energy. Wet process exhibited highest fracture energy and lowest strength.
机译:使用再生/再生沥青路面(RAP)可带来经济和环境效益。但是,由于必须使用昂贵的较软的粘结剂来补偿RAP的硬化效果,因此增加新沥青路面中RAP的百分比可能会阻碍经济利益。或者,可以通过使用其他再生材料:碎橡胶(CR)来克服此问题。在这项研究中,用不同的橡胶沥青粘合剂制备的混合物的线性粘弹性,热和疲劳开裂性能与软粘合剂进行了比较。测试范围包括由以下粘合剂生产的沥青混合料; (i)脱硫橡胶,(ii)CR末端共混物,(iii)CR湿法,(iv)软质粘合剂(PG 58-34)和(v)基础(对照)粘合剂(PG 58-28)。疲劳试验的结果表明,由基础粘合剂(PG58-28)制成的CR改性沥青混合物的性能优于由颠簸(PG58-34)粘合剂制成的混合物。在低温裂化试验中观察到类似的结果。结果表明,在高RAP混合物中,可以使用CR改性的粘结剂代替粘结剂的等级颠簸。在疲劳裂纹测试中,在三种CR技术中,湿法工艺在高温下的最终混合物和脱硫橡胶的性能优于高温下的高应变水平。在相对较低的应变水平下,在低温下终端混合性能最佳。在低温开裂试验中,脱硫橡胶表现出最高的拉伸强度,但断裂能最低。湿法工艺表现出最高的断裂能和最低的强度。

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