Effect of Polypropylene and Basalt Fiber on the Behavior of Mortars for Repair Applications

Author:

Jiang Chaohua1ORCID,Huang Shanshan1,Zhu Yuwen1,Lin Yifeng2,Chen Da1ORCID

Affiliation:

1. College of Harbor, Coastal and Offshore Engineering, Hohai University, Nanjing 210098, China

2. Investigation, Design and Research Institute Co., Ltd, Shanghai 200434, China

Abstract

The fresh, mechanical, and durability properties of the polypropylene fiber-reinforced mortar (PP FRM) and the basalt fiber-reinforced mortar (BFRM) with various fiber contents were tested in this paper. The test results show that the presence of polypropylene (PP) fiber and basalt fiber (BF) in the mortar reduces the initial slump flow and increases the slump flow loss rate. The bond strength and flexural strength of fiber-reinforced mortar (FRM) are improved, whereas no obvious improvement on the compressive strength has been observed. Compared with the control mortar, the bond strength of PP FRM and BFRM reinforced with 0.6 kg/m3, 1.6 kg/m3, and 2.6 kg/m3fiber increases by 16.60%–28.80% and 10.60%–21.40%, respectively. Furthermore, FRM shows lower drying shrinkage, superior abrasion resistance, water impermeability, and freeze-thaw resistance compared with the control mortar. The abrasion resistance strength of PP FRM and BFRM is 77.30% and 38.65% more than the control mortar with 2.6 kg/m3fiber content. Therefore, PP FRM and BFRM are suitable to be utilized as repair materials, especially in repairing hydraulic structures surfaces with excellent bond strength and abrasion resistance.

Funder

Natural Science Foundation of Jiangsu Province

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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