A comprehensive overview of jute fiber reinforced cementitious composites
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TLDR
In this paper, the impact of jute fiber on the strength of cementitious composites is discussed, including compressive strength, split tensile strength, and flexural strength.About:
This article is published in Case Studies in Construction Materials.The article was published on 2021-12-01 and is currently open access. It has received 36 citations till now. The article focuses on the topics: Fiber.read more
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Potential use of recycled plastic and rubber aggregate in cementitious materials for sustainable construction: A review
TL;DR: In this paper, a scientometric analysis approach was adopted in conjunction with a comprehensive review of the literature on the use of recycled waste plastic and rubber as an aggregate substitute in concrete.
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A comprehensive overview of geopolymer composites: A bibliometric analysis and literature review
Haihua Yang,Frédérique Lachaud,Liang Liu,Yang Wu,Hanlong Liu,Waqas Ahmad,Ayaz Ahmad,Fahid Aslam,Panuwat Joyklad +8 more
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Current Development and Future Perspective on Natural Jute Fibers and Their Biocomposites
TL;DR: In this paper , the characterization and performance of jute fibers are reviewed and the main focus is shifted towards research advancements in enhancing physical, mechanical, thermal and tribological properties of the polymeric materials (i.e., synthetic or biobased and thermoplastic or thermoset plastic) reinforced with jute fiber in a variety of forms such as particle, short fiber or woven fabric.
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Comparative study for efficacy of chemically treated jute fiber and bamboo fiber on the properties of reinforced concrete beams
TL;DR: In this paper , the performance of treated natural fibers in the enhancement of strength of concrete has been examined and the optimum dosage of treated bamboo and jute fiber has been identified as 1.5% and 2%, respectively.
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Influence of Jute Fiber on Tensile, Electrical, and Permeability Characteristics of Slag Concrete: A Better, Cheaper, and Eco-Friendly Substitute for Conventional Concrete
Muhammad Ahsan Gulzar,Babar Ali,Osama Barakat,Marc Azab,Ahmed M. Najemalden,Ahmed Salih Mohammed,Yasser Alashker +6 more
TL;DR: In this article , the authors promote the idea of simultaneous incorporation of ground granulated blast furnace slag (GGBS) and jute fiber (JF) to develop eco-friendly and ductile concrete.
References
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A laboratory study of high-performance cold mix asphalt mixtures reinforced with natural and synthetic fibres
TL;DR: In this article, the impact of using natural and synthetic fibres as reinforcing materials, on the mechanical properties and water susceptibility of cold mix asphalt (CMA) including indirect tensile stiffness and resistance to rutting, cracking and moisture damage was examined.
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Recovery of sawdust resulting from marble processing plants for future uses in high value-added products
TL;DR: In this article, the use of microfine marble sawdust as functional filler in industrial products having higher added value, such as paper, rubber, paints, pharmaceuticals, has been studied, and a commentary on environmental laws pertaining to the recycle of this kind of waste is also made.
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An experimental investigation and modeling approach of response surface methodology coupled with crow search algorithm for optimizing the properties of jute fiber reinforced concrete
TL;DR: In this paper, a response surface methodology (RSM) articulated with crow search algorithm (CSA)-based platform was developed for predicting and optimizing the variables that affect JFRCC properties.
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Application of Novel Machine Learning Techniques for Predicting the Surface Chloride Concentration in Concrete Containing Waste Material.
TL;DR: In this paper, Gene Expression Programming (GEP), the decision tree (DT), and an artificial neural network (ANN) were used to predict the surface chloride concentrations, and the most accurate algorithm was then selected.
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A mild alkali treated jute fibre controlling the hydration behaviour of greener cement paste
Byung-Wan Jo,Sumit Chakraborty +1 more
TL;DR: A model has been proposed to explain the setting and hydration behaviour of alkali treated jute fibre reinforced cement composite and it is determined that fibre-cement compatibility is increased and hydrated delaying effect is minimized by using alkalitreated jute fiber as fibre reinforcement.