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RCA高模量玄武岩纤维AC-20C沥青混合料路用性能研究

王丽 邵景干 王兆仑 王俊超 李文凯

合成材料老化与应用2024,Vol.53Issue(5):32-35,4.
合成材料老化与应用2024,Vol.53Issue(5):32-35,4.

RCA高模量玄武岩纤维AC-20C沥青混合料路用性能研究

Research on the Road Performance of RCA High Modulus Basalt Fiber AC-20C Asphalt Mixture

王丽 1邵景干 2王兆仑 2王俊超 3李文凯3

作者信息

  • 1. 河南交通投资集团有限公司周口分公司,河南周口 466000
  • 2. 河南交通职业技术学院,河南郑州 450046||河南交院工程技术集团有限公司,河南郑州 450046
  • 3. 河南交院工程技术集团有限公司,河南郑州 450046
  • 折叠

摘要

Abstract

In order to restrain the emergence of asphalt pavement disease and extend its service life,we mixed basalt fiber and RCA high modulus agent into AC-20C asphalt mixture,and carried out research on road performance such as high temperature rutting resistance,low temperature cracking resistance and water damage resistance.The recommended dosage of RCA high modulus agent was evaluated by three index tests on 70 Grade A asphalt with different RCA high modulus agent content.Based on the design of the mix ratio of basalt fiber AC-20C asphalt mixture with different RCA high modulus agent content and the related pavement performance,we determined the best oil-stone ratio and the reasonable dosage of RCA high modulus agent.The test results show that the modified asphalt with high modulus can meet the technical requirements of conventional SBS I-D polymer modified asphalt when the content of high modulus agent is 10%~16%.The addition of 0.4%basalt fiber can significantly improve the pavement performance of asphalt mixture.From the aspect of high temperature performance,the recommended content of RCA high modulus agent is 16%,and from the aspect of low temperature performance and water stability,the recommended content of RCA high modulus agent is 14%.

关键词

高模量剂/玄武岩纤维/矿料级配/油石比/路用性能

Key words

high modulus agent/basalt fiber/aggregate gradation/oil-stone ratio/pavement performance

分类

交通工程

引用本文复制引用

王丽,邵景干,王兆仑,王俊超,李文凯..RCA高模量玄武岩纤维AC-20C沥青混合料路用性能研究[J].合成材料老化与应用,2024,53(5):32-35,4.

基金项目

河南省交通运输科技计划项目(2016-2-3) (2016-2-3)

河南省交通运输科技计划项目(2017J8) (2017J8)

河南省交通运输科技计划项目(2021T7) (2021T7)

河南省交通运输科技计划项目(2021J5). (2021J5)

合成材料老化与应用

OACSTPCD

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