Materia | |
Optimization of rapid-repair material ratio and performance analysis based on orthogonal test | |
article | |
Ye Jixing1  Pan Zhu2  Luo Junhui2  | |
[1] Guangxi Transportation Design Group Co., Ltd.;Guangxi Beitou Traffic Maintenance Technology Group Co., Ltd. | |
关键词: Rapid-repair materials; Ultrafine mineral admixture; Flexural strength; Bonding strength; | |
DOI : 10.1590/1517-7076-RMAT-2023-0079 | |
学科分类:工程和技术(综合) | |
来源: Universidade Federal do Rio de Janeiro * Coordenacao dos Programas de Pos-Graduacao de Engenharia | |
【 摘 要 】
Through orthogonal experimental design, the influence of the water-binder ratio, binder-sand ratio, ultrafine mineral admixture content, and steel fiber content on the fluidity and basic mechanical properties of rapid-repair materials was studied. The optimal mixing ratio parameters were determined, and its swelling and shrinkage performance and microstructure were analyzed. The results showed that the water-binder ratio and steel fiber content were the most significant factors affecting the properties of rapid-repair materials. The steel fiber content in the rapid-repair material led to pull-out failure and significantly affected flexural strength but had a relatively small effect on compressive strength. With the determined optimal mix proportion, the rapid-repair material had good fluidity and high early strength, bonding strength, and volume stability. At age 3 h, the material’s flexural strength and compressive strength were 13.7 MPa and 27.8 MPa, respectively, and the adhesive strength was 3.65 MPa. The limited expansion rate of 56 d-age repair material was 326.5 × 10−6, which can better meet the requirements of repairing highway pavement and bridge expansion joints to reopen to traffic within 3 h of repair.
【 授权许可】
CC BY
【 预 览 】
Files | Size | Format | View |
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RO202307080001126ZK.pdf | 4580KB | download |