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活化胶粉/纳米碳酸钙复合改性沥青性能影响及机理研究

丁天雨 杨洋 晏永 张世博 赵艳芳

中国塑料2024,Vol.38Issue(10):48-54,7.
中国塑料2024,Vol.38Issue(10):48-54,7.DOI:10.19491/j.issn.1001-9278.2024.10.009

活化胶粉/纳米碳酸钙复合改性沥青性能影响及机理研究

Study on properties and mechanism of asphalt modified with active rubber powder/nano-calcium carbonate composites

丁天雨 1杨洋 1晏永 1张世博 1赵艳芳1

作者信息

  • 1. 昆明理工大学建筑工程学院,云南省土木工程防灾重点实验室,云南省绿色建造与智慧运维国际联合实验室,昆明 650500
  • 折叠

摘要

Abstract

At present the increasing traffic axle load brings a greater pressure to asphalt pavement.In this study,the waste rubber powders with different activation degrees and the surface-modified nano-CaCO3 were employed as modifiers to pre-pare activated rubber powder/nano-CaCO3 composite-modified asphalts,and three optimal modification systems were pro-posed through comparing the penetration and softening point ductility of the modified asphalts.The high-temperature per-formance of the modified asphalts was investigated by DSR,their anti-aging performance was evaluated by a thin film oven test,their storage stability was assessed by a segregation test,and their morphology and functional groups were analyzed by fluorescence microscopy and Fourier-transform infrared spectroscopy.The results indicated that an activation treatment improved the compatibility between rubber powders and asphalt,thus enhancing the storage stability of the modified as-phalts.The modified asphalts obtained from the three optimal modification systems exhibited good high-and low-tempera-ture performance,anti-aging performance,workability,and storage stability.Both physical reaction and chemical reaction occurred in the modification of activated rubber powders and activated rubber powder/nano-CaCO3 composite-modified as-phalts.Among the three optimal modification systems,the sample 5#exhibited the best comprehensive performance.

关键词

胶粉/纳米碳酸钙/沥青/性能/机理

Key words

rubber powder/nano-CaCO3/asphalt/property/mechanism

分类

化学化工

引用本文复制引用

丁天雨,杨洋,晏永,张世博,赵艳芳..活化胶粉/纳米碳酸钙复合改性沥青性能影响及机理研究[J].中国塑料,2024,38(10):48-54,7.

基金项目

云南省科技厅重大科技专项计划"大宗固废规模化应用关键技术研发及工程示范"(202202AG050020) (202202AG050020)

中国塑料

OA北大核心CSTPCD

1001-9278

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