Mechanical behavior of waste fishing net fiber-reinforced cementitious composites subjected to direct tension SCIE SCOPUS

Cited 15 time in WEB OF SCIENCE Cited 22 time in Scopus
Title
Mechanical behavior of waste fishing net fiber-reinforced cementitious composites subjected to direct tension
Author(s)
Park, Jun Kil; Kim, D.J.; Kim, Min Ook
KIOST Author(s)
Park, Jun Kil(박준길)
Alternative Author(s)
박준길; 김민욱
Publication Year
2021-01
Abstract
In this study, we investigated the mechanical behavior of waste fishing net (WFN) fiber-reinforced cementitious composites (FRCCs) subjected to direct tension to evaluate the possibility of using WFN fibers as reinforcement in cementitious composites. Three different WFN fibers, two commercial (C) polypropylene (PP) fibers, and two fiber volumes (0.5 and 1.0%) were considered as test variables to explore the effect of adding WFN fiber to a cement mortar. As the fiber volume was increased, both the compressive and first cracking strengths decreased, while the post-cracking strength increased. Reinforced samples (WFN3-FRCCs) with a 0.5% fiber volume exhibited the highest compressive strength, while those with a fiber volume of 1.0% had the highest post-cracking strength. The compressive and post-cracking strengths of WFN3-FRCCs were 6-10% and 2-13% higher than those of C-FRCCs, respectively. Therefore, WFN-fibers consisting of twisted yarns, which generate mechanical bonds during fiber pull-out, are appropriate for reinforcing cement mortar, thereby improving their strength and ductility under tensile loads.
ISSN
2352-7102
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/38555
DOI
10.1016/j.jobe.2020.101622
Bibliographic Citation
JOURNAL OF BUILDING ENGINEERING, v.33, 2021
Publisher
ELSEVIER
Subject
POLYETHYLENE FIBER; RATE SENSITIVITY; STEEL FIBERS; PERFORMANCE; CONCRETE; PULLOUT; SHRINKAGE; IMPACT; SHCC
Keywords
Waste fishing net fibers; Fiber-reinforced cementitious composites; Tensile behavior; First cracking; Post-cracking
Type
Article
Language
English
Document Type
Article
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