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Effect of Different Polymer Modifiers on the Long-Term Rutting and Cracking Resistance of Asphalt Mixtures

机译:不同聚合物改性剂对沥青混合物的长期车辙和开裂性的影响

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摘要

To evaluate the long-term performances of different polymer-modified asphalt mixtures, three modifiers were chosen to modify AC-13 (defined as the asphalt concrete with the aggregate nominal maximum particle size of 13.2 mm); namely, high viscosity modifier (HVM), high modulus modifier (HMM), and anti-rutting agent (ARA). The deformation and cracking resistance of different polymer-modified mixtures were checked at different aging conditions (unaged, short-term aged, and long-term aged for 5, 10, and 15 days respectively). The results of the Hamburg wheel-track test and uniaxial penetration test (UPT) showed that the rutting resistance of all asphalt mixtures changed in a V-shape as the aging progressed. From the unaged stage to the long-term aging stage (5 days), the rutting resistance decreases gradually. While after the long-term aging stage (5 days), the rutting resistance increases gradually. Results from the semicircular bending test (SCB) and the indirect tensile asphalt cracking test (IDEAL-CT) indicated that the cracking resistance of all the mixtures gradually decline with the deepening of the aging degree, indicating that aging weakens the crack resistance of asphalt mixtures. Additionally, test results showed that the rutting resistance of ARA AC-13 (defined as AC-13 containing ARA) is the best, the cracking resistances of ARA AC-13, HMM AC-13 (defined as AC-13 containing HMM) and HVM AC-13 (defined as AC-13 containing HVM) have no significant difference, and different polymer modifiers had different sensitivities to aging due to the polymer content and the type of modifier. The conclusions of this study help to further understand the long-term performance of polymer-modified asphalt mixtures during service life and to help guide the selection of modifiers for mixtures.
机译:为了评估不同聚合物改性沥青混合物的长期性能,选择三种改性剂以改性AC-13(定义为沥青混凝土,总标称最大粒径为13.2mm);即,高粘度改性剂(HVM),高模量改性剂(HMM)和抗轨道剂(ARA)。在不同的老化条件下检查不同聚合物改性混合物的变形和开裂抗性(分别为5,10和15天的长期老化,长期老化)。汉堡轮轨试验和单轴渗透试验(UPT)的结果表明,随着老化进展的情况下,所有沥青混合物的车辙抗性变为V形。从一个长期衰老阶段(5天)到长期老化阶段,车辙抵抗逐渐降低。在长期老化阶段(5天)之后,车辙抵抗逐渐增加。由半圆形弯曲试验(SCB)和间接拉伸沥青裂解试验(理想CT)结果表明,所有混合物的开裂性随着老化程度的深化逐渐下降,表明老化削弱了沥青混合物的抗裂性。另外,测试结果表明,ARA AC-13的射线电阻(定义为AC-13)是最好的,ARA AC-13的裂缝电阻,HMM AC-13(定义为含有HMM的AC-13)和HVM AC-13(定义为AC-13含有HVM)没有显着差异,不同的聚合物改性剂由于聚合物含量和改性剂的类型而对老化具有不同的敏感性。该研究的结论有助于进一步了解使用寿命期间聚合物改性沥青混合物的长期性能,并帮助指导混合物选择改性剂。

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