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由温拌添加剂组成的再生橡胶沥青结合料的抗裂性

Cracking Resistance of Recycled Rubber Asphalt Binder Composed of Warm-Mix Additives.

作者信息

Gui Wanmei, Liang Li, Wang Lan, Zhang Fei

机构信息

Resources and Civil Engineering, Northeastern University, Shenyang 110000, China.

Civil Engineering, Inner Mongolia University of Technology, Hohhot 010051, China.

出版信息

Materials (Basel). 2022 Jun 21;15(13):4389. doi: 10.3390/ma15134389.

Abstract

Warm-mix asphalt technology has been applied to recycled rubber asphalt binder (RAB), which forms warm-mixed crumb rubber-modified asphalt binder (W-RAB) as a "green" material for environmental conservation and to enhance road performance. Furthermore, low-temperature cracking is one of the major distresses for asphalt pavement, which drastically restricts ride quality and service level. Therefore, the main objective of this study is to comparatively analyze the low-temperature properties of W-RABs based on thermal stress and the simple fractional model. W-RABs were obtained by mixing 60 mesh recycled rubber (CR) and two different types of warm-mix additives, namely viscosity reducer (1, 2, and 3%) and surfactant (0.4, 0.6, and 0.8%). First, Hopkins and Hamming's numerical algorithm and the Boltzmann superposition principle were used for obtaining thermal stress σT. Subsequently, critical cracking temperature Tcr was derived using the single asymptote procedure (SAP) theory. Second, the simple fractional viscoelasticity model was used to calculate the creep compliance, damping ratio, and dissipation energy ratio, and the results were compared with the Superpave protocol results obtained with bending beam rheometer (BBR) tests. The results showed that a combination of CR and warm-mix additives could slightly improve the thermal crack resistance of the asphalt binder. The addition of 0.6% surfactant yielded the optimum performance, while only a high dosage (3%) of viscosity reducer provided a marked improvement in efficiency, which decreased with a decrease in temperature. This study recommends the use of RAB composited with 0.6% surfactant for areas with extremely low temperature.

摘要

温拌沥青技术已应用于再生橡胶沥青结合料(RAB),形成了温拌橡胶粉改性沥青结合料(W-RAB),作为一种用于环境保护和提升道路性能的“绿色”材料。此外,低温开裂是沥青路面的主要病害之一,严重限制了行车舒适性和服务水平。因此,本研究的主要目的是基于热应力和简单分数模型对W-RAB的低温性能进行对比分析。W-RAB是通过将60目再生橡胶(CR)与两种不同类型的温拌添加剂混合而成,即降黏剂(1%、2%和3%)和表面活性剂(0.4%、0.6%和0.8%)。首先,利用霍普金斯和汉明数值算法以及玻尔兹曼叠加原理来获取热应力σT。随后,采用单渐近线程序(SAP)理论推导出临界开裂温度Tcr。其次,使用简单分数黏弹性模型来计算蠕变柔量、阻尼比和耗能比,并将结果与通过弯曲梁流变仪(BBR)试验获得的Superpave协议结果进行比较。结果表明,CR与温拌添加剂的组合可略微提高沥青结合料的抗热裂性能。添加质量分数为0.6%的表面活性剂时性能最佳,而只有高剂量(3%)的降黏剂能显著提高效率,且该效率随温度降低而降低。本研究建议在极低温地区使用与0.6%表面活性剂复合的RAB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/362d/9267669/f6aad60de95a/materials-15-04389-g001.jpg

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