Javascript must be enabled to continue!
Strength and Durability of Kenaf Fiber Reinforced Concrete for Marine Structures
View through CrossRef
Nowadays, Kenaf fiber is sustainably useful in marine structures and has become one of the materials that may be high in demand as it is light, biodegradable and environmental friendly. This study investigates the effect of fiber percentage on compressive strength of fiber reinforced concrete (FRC) and the relationship between compressive strength and time of FRC immersion in seawater. FRC concrete cubes were prepared using four different percentage of fiber (0%, 1.5%, 3.0% and 4.5%). These FRC were immersed in seawater for 7, 14 and 21 days for three consecutive weeks. Based on the experiment, it was found that there was improvement in compressive strength of FRC when compared to plain cement concrete. The results showed that 3.0% of KF to cement matrix concrete determined the highest compressive strength of 205.43 Pa while 0% of KF fiber to cement concrete matrix (control specimen) showed the lowest compressive strength of 158.28 Pa. Also the addition of Kenaf fiber to cement concrete decreased the seawater absorption more than concrete with absolutely 0% of KF fiber to cement concrete (control specimen). In conclusion, the results did show significant improvement and a consistent trend on strength with the addition of FRC. This study also revealed that the percentage of water absorption was on the increase for 0, 7 and 14 days and become constant after day 21. This is due to manufacturing defects that occurred which block the water from entering the material and making the material absorb less water.
Penerbit UMT, Universiti Malaysia Terengganu
Title: Strength and Durability of Kenaf Fiber Reinforced Concrete for Marine Structures
Description:
Nowadays, Kenaf fiber is sustainably useful in marine structures and has become one of the materials that may be high in demand as it is light, biodegradable and environmental friendly.
This study investigates the effect of fiber percentage on compressive strength of fiber reinforced concrete (FRC) and the relationship between compressive strength and time of FRC immersion in seawater.
FRC concrete cubes were prepared using four different percentage of fiber (0%, 1.
5%, 3.
0% and 4.
5%).
These FRC were immersed in seawater for 7, 14 and 21 days for three consecutive weeks.
Based on the experiment, it was found that there was improvement in compressive strength of FRC when compared to plain cement concrete.
The results showed that 3.
0% of KF to cement matrix concrete determined the highest compressive strength of 205.
43 Pa while 0% of KF fiber to cement concrete matrix (control specimen) showed the lowest compressive strength of 158.
28 Pa.
Also the addition of Kenaf fiber to cement concrete decreased the seawater absorption more than concrete with absolutely 0% of KF fiber to cement concrete (control specimen).
In conclusion, the results did show significant improvement and a consistent trend on strength with the addition of FRC.
This study also revealed that the percentage of water absorption was on the increase for 0, 7 and 14 days and become constant after day 21.
This is due to manufacturing defects that occurred which block the water from entering the material and making the material absorb less water.
Related Results
Mechanical Properties of Short Fiber and Non-Woven Kenaf Reinforced Polypropylene Composites: Effects of Oil Palm Shell Powder Addition
Mechanical Properties of Short Fiber and Non-Woven Kenaf Reinforced Polypropylene Composites: Effects of Oil Palm Shell Powder Addition
Kenaf is renowned for its renewable and environmental friendly properties. Recently, there is an interest on the application of kenaf-based material for high-end uses such as in th...
The effect of kenaf loading on kenaf/ABS composites structure and thermal properties
The effect of kenaf loading on kenaf/ABS composites structure and thermal properties
Many manufacturers have recently become interested in using fiber-reinforced polymer composites (FRPs) in structural applications. Synthetic fibres, such as carbon and glass fibres...
Kenaf (Hibiscus cannabinusL.) Seed Extract as a New Plant-Based Milk Alternative and Its Potential Food Uses
Kenaf (Hibiscus cannabinusL.) Seed Extract as a New Plant-Based Milk Alternative and Its Potential Food Uses
Kenaf (Hibiscus cannabinus L.) seed is rich in protein, fat, fiber, and other essential nutrients. Kenaf seed comprises of high protein (22–31%) and oil (22–25%) contents which sug...
Carding Kenaf for Nonwovens
Carding Kenaf for Nonwovens
Kenaf is a bast fiber that offers the advantage of being biodegradable, renewable, and environmentally safe. Unfortunately, mechanically harvested (raw) kenaf fibers are coarse, br...
DISSOLVING PULP FROM KENAF BY BIO-BLEACHING PROCESS
DISSOLVING PULP FROM KENAF BY BIO-BLEACHING PROCESS
The kenaf taken from Malang-East Java was four to five months old and used as the raw material of dissolving pulp. Morphology and chemicals content of kenaf was analyzed based on I...
He found use for reinforced concrete where, it would seem, this material has no place
He found use for reinforced concrete where, it would seem, this material has no place
Introduction. The article is devoted to an employee of the Research Institute of Reinforced Concrete, Doctor of Technical Sciences, Professor I.G. Ludkovsky, a specialist in the fi...
Blanqueig enzimàtic de pasta de kenaf emprant sistemes lacasa-mediador
Blanqueig enzimàtic de pasta de kenaf emprant sistemes lacasa-mediador
La present tesi s’emmarca dins d’una de les línies del Grup de Recerca Paperer i Gràfic (CIPAGRAF), del Departament d’Enginyeria Tèxtil i Paperera de l’Escola Tècnica Superior d’En...
Preparing and Characterizing Kenaf/Cotton Blended Fabrics
Preparing and Characterizing Kenaf/Cotton Blended Fabrics
Kenaf fibers offer the advantage of being renewable, biodegradable, and environmen tally safe, but kenaf is difficult to process and spin because of its coarseness, stiffness, and ...

