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基于加速磨耗试验的钢渣-橡胶沥青混合料抗滑性能研究
引用本文:武建民,覃仲,徐长春,李少卿,张恒聪.基于加速磨耗试验的钢渣-橡胶沥青混合料抗滑性能研究[J].科学技术与工程,2022,22(9):3735-3743.
作者姓名:武建民  覃仲  徐长春  李少卿  张恒聪
作者单位:长安大学教育部特殊地区公路工程重点实验室;中交建冀交高速公路投资发展有限公司
基金项目:河北省交通科技项目(TH1-202019)
摘    要:为研究钢渣-橡胶沥青混合料的抗滑性能,通过钢渣替换不同比例粗集料的形式,设计控制试验变量,制备AC-13钢渣-橡胶沥青混合料(AC-13 Steel Slag-Rubber Asphalt Mixture,ASSAM),采用室内加速磨耗试验,研究了不同粗集料分维值的级配和不同钢渣掺量对ASSAM抗滑性能的影响;采用抗滑衰减率研究ASSAM的抗滑性能衰减程度;采用指数模型研究了ASSAM的抗滑衰变规律;基于抗滑性能研究结果推荐了ASSAM最佳钢渣掺量。结果表明:ASSAM短期抗滑性能和长期抗滑性能良好;减小级配粗集料分维值或增加钢渣掺量对其抗滑性能均有较好的提升作用,但减小级配粗集料分维值的作用更加显著;ASSAM的抗滑性能随钢渣掺量的增加而提高,结合其路用性能和体积安定性,推荐40%作为最佳的钢渣掺量。

关 键 词:道路工程    钢渣-橡胶沥青混合料    抗滑性能    抗滑衰变规律    加速磨耗试验
收稿时间:2021/8/9 0:00:00
修稿时间:2022/3/9 0:00:00

Steel Slag-Rubber Asphalt Mixture Skid Resistance Study Based on Accelerated Wear Test
Wu Jianmin,Qin Zhong,Xu Changchun,Li Shaoqing,Zhang Hengcong.Steel Slag-Rubber Asphalt Mixture Skid Resistance Study Based on Accelerated Wear Test[J].Science Technology and Engineering,2022,22(9):3735-3743.
Authors:Wu Jianmin  Qin Zhong  Xu Changchun  Li Shaoqing  Zhang Hengcong
Institution:Key Laboratory of Highway Engineering in Special Areas, Ministry of Education, Chang''an University;CCCC Jijiao Expressway Investment and Development Company Limited
Abstract:In order to study the skid resistance of steel slag-rubber asphalt mixture, AC-13 Steel Slag-Rubber Asphalt Mixture (ASSAM) was prepared by replacing different prop-ortions of coarse aggregate with steel slag and designing control test variables. The effects of different gradations of coarse aggregate fractal dimension and different steel slag cont-ent on the skid resistance of ASSAM were studied by indoor accelerated wear test. The skid resistance attenuation rate of ASSAM was studied by adopting anti-sliding decay rate.The anti-sliding decay law of ASSAM was studied by exponential model. Based on the r-esearch results of anti-sliding performance, the optimal steel slag content of ASSAM was recommended. The results show that ASSAM has good short-term and long-term skid resi-stance. Reducing the fractal dimension of graded coarse aggregate or increasing the cont-ent of steel slag has a good effect on improving its anti-sliding performance, but the effe-ct of reducing the fractal dimension of graded coarse aggregate is more significant. The skid resistance of ASSAM increases with the increase of steel slag content. Combined wi-th its road performance and volume stability, 40% is recommended as the best steel slag content.
Keywords:Road engineering  Steel slag-rubber asphalt mixture  Anti-sliding performance  Anti-sliding decay law  Accelerated wear test
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