scholarly journals Mechanical and Thermal Properties of Sugar Palm Fiber (Arenga pinnata)–Reinforced Phenolic Composites

Author(s):  
Bushra Rashid ◽  
Z. Leman ◽  
Aymen R. Mohammed ◽  
M. Jawaid ◽  
M.R. Ishak
2020 ◽  
pp. 002199832097519
Author(s):  
Fatma Naiiri ◽  
Allègue Lamis ◽  
Salem Mehdi ◽  
Zitoune Redouane ◽  
Zidi Mondher

Natural fibers are increasingly used in composites because of their low cost and good mechanical properties. Cement reinforced with natural fibersis contemplates as a new generation of construction materials with superior mechanical and thermal performance. This study of three sizes’effect of Doum palm fiber explores the mortar’s behavior reinforced with different fiber ratio. The aim is to determine the optimal addition to improve mechanical and thermal properties of natural fiber reinforced cements. Physical, mechanical and thermal properties of composite are examined. Tensile properties of Doum fibers are verified to determine their potential as reinforced material. Findings prove that the use of alkali-treated Doum fiber as reinforcement in cement mortar composite leads to the upgrading of the mechanical properties including thermo-physical properties against composites reinforced with raw fibers and control cement mortars. While, the compression and flexural strength of the cement mortar reinforced with alkali-treated Doum fiber with diameter 0.3 mm (CT3) are metered to be 11.11 MPa, 5.22 MPa, respectively for fiber content 0.5%. Additionally, based on thermo-physical tests, it is assessed that the thermal conductivity and diffusivity decrease for cement mortar reinforced with Doum fiber with diameter 0.2 mm (CT2).


JOM ◽  
2018 ◽  
Vol 70 (7) ◽  
pp. 1326-1330 ◽  
Author(s):  
A. A. Mohammed ◽  
D. Bachtiar ◽  
M. R. M. Rejab ◽  
X. X. Jiang ◽  
Falak O. Abas ◽  
...  

2019 ◽  
Vol 40 (9) ◽  
pp. 3657-3665 ◽  
Author(s):  
Roya Kashizadeh ◽  
Masoud Esfandeh ◽  
Amir Masoud Rezadoust ◽  
Razi Sahraeian

2016 ◽  
Vol 98 ◽  
pp. 36-43 ◽  
Author(s):  
Hamid Essabir ◽  
Radouane Boujmal ◽  
Mohammed Ouadi Bensalah ◽  
Denis Rodrigue ◽  
Rachid Bouhfid ◽  
...  

2021 ◽  
pp. 53-83
Author(s):  
R.A. Ilyas ◽  
S.M. Sapuan ◽  
A. Atiqah ◽  
M.R.M. Asyraf ◽  
N.M. Nurazzi ◽  
...  

Polymers ◽  
2021 ◽  
Vol 13 (19) ◽  
pp. 3338
Author(s):  
Nasrullah Mat Rozi ◽  
Hamidah Abdul Hamid ◽  
Md. Sohrab Hossain ◽  
Nor Afifah Khalil ◽  
Ahmad Naim Ahmad Yahaya ◽  
...  

A multi-objective optimization of in situ sol-gel process was conducted in preparing oil palm fiber-reinforced polypropylene (OPF-PP) composite for an enhancement of mechanical and thermal properties. Tetraethyl orthosilicate (TEOS) and butylamine were used as precursors and catalysts for the sol-gel process. The face-centered central composite design (FCCD) experiments coupled with response surface methodology (RSM) has been utilized to optimize in situ silica sol-gel process. The optimization process showed that the drying time after the in-situ silica sol-gel process was the most influential factor on silica content, while the molar ratio of TEOS to water gave the most significant effect on silica residue. The maximum silica content of 34.1% and the silica residue of 35.9% were achieved under optimum conditions of 21.3 h soaking time, 50 min drying time, pH value of 9.26, and 1:4 molar ratio of TEOS to water. The untreated oil palm fiber (OPF) and silica sol-gel modified OPF (SiO2-OPF) were used as the reinforcing fibers, with PP as a matrix and maleic anhydride grafted polypropylene (MAgPP) as a compatibilizer for the fiber-reinforced PP matrix (SiO2-OPF-PP-MAgPP) composites preparation. The mechanical and thermal properties of OPF-PP, SiO2-OPF-PP, SiO2-OPF-PP-MAgPP composites, and pure PP were determined. It was found that the OPF-S-PP-MAgPP composite had the highest toughness and stiffness with values of tensile strength, Young’s modulus, and elongation at break of 30.9 MPa, 881.8 MPa, and 15.1%, respectively. The thermal properties analyses revealed that the OPF-S-PP-MAgPP exhibited the highest thermally stable inflection point at 477 °C as compared to pure PP and other composites formulations. The finding of the present study showed that the SiO2-OPF had the potential to use as a reinforcing agent to enhance the thermal-mechanical properties of the composites.


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