Faris AL-Oqla - Academia.edu (original) (raw)

Faris AL-Oqla

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Faris AL-Oqla

Ashish Maharjan

Antoaneta Ene

hafeezur rahman

David Sibanda

David Sibanda

National University of Science and Technology Zimbabwe

Abdullah Al Asif

Dobdinga Fonchamnyo

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Papers by Faris AL-Oqla

Research paper thumbnail of Hybrid material performance assessment for rocket propulsion

Journal of the Mechanical Behavior of Materials

Fuel based on hybrid green material is of paramount importance for various military and civilian ... more Fuel based on hybrid green material is of paramount importance for various military and civilian purposes. This work presents a novel expert-based multi-criteria hierarchy and decision-making model to evaluate various chemical rocket propulsion technologies with different fuel material types under an uncertain environment. This helps select the most appropriate fuel material types according to the performance requirements considering various evaluation criteria toward achieving better performance economic benefits of the sustainable hybrid green material-based fuel for various applications. Here, the analytical hierarchy process model was utilized to enhance more informative decisions from both numerical and linguistics information regarding the performance of the fuel based on hybrid green material under an uncertain environment. The model considers various simultaneous evaluations and conflicting criteria to practically demonstrate economic, technical, and sustainable issues for t...

Research paper thumbnail of A novel adaptive neuro-fuzzy inference system model to predict the intrinsic mechanical properties of various cellulosic fibers for better green composites

Research paper thumbnail of Introduction to Biobased Composites

Research paper thumbnail of Evaluation and Comparison of Date Palm Fibers with Other Common Natural Fibers

Date Palm Fiber Composites

Research paper thumbnail of Mechanical performance investigation of lignocellulosic coconut and pomegranate / LDPE biocomposite green materials

Journal of the Mechanical Behavior of Materials

Biocomposites have been implemented in various industrial applications. However, it is necessary ... more Biocomposites have been implemented in various industrial applications. However, it is necessary to demonstrate their desired mechanical performance aspects for the near future green products. The aim of this work is to study the efficiency of utilizing both coconut and pomegranate lignocellulosic fiber as green reinforcement types for the low-density polyethylene, LDPE. Desired mechanical performance trends are investigated for the green composites including the tensile strength, tensile modulus, and elongation to break properties as a function of various reinforcement configurations. This was performed to properly optimize the reinforcement conditions to obtain desirable mechanical characteristics of such types of bio-composites for more sustainable functional attributes. Results have demonstrated that the best tensile strength for the coconut/PE was achieved at 20wt.% case with 8.2 MPa, and the best regarding this property for the pomegranate/PE was at 30wt.% with a value close t...

Research paper thumbnail of Physical and Mechanical Inherent Characteristic Investigations of Various Jordanian Natural Fiber Species to Reveal Their Potential for Green Biomaterials

Journal of Natural Fibers

Research paper thumbnail of Performance trends and deteriorations of lignocellulosic grape fiber/polyethylene biocomposites under harsh environment for enhanced sustainable bio-materials

Research paper thumbnail of Tribological and mechanical fracture performance of Mediterranean lignocellulosic fiber reinforced polypropylene composites

Research paper thumbnail of Hybrid green organic/inorganic filler polypropylene composites: Morphological study and mechanical performance investigations

e-Polymers

In this study, the morphological and mechanical performances of hybrid green organic and inorgani... more In this study, the morphological and mechanical performances of hybrid green organic and inorganic filler composites were investigated. Various hybrid reinforcements using natural waste fillers including lemon leaves and eggshells were utilized for the study. The tensile strength, tensile modulus, elongation to break, flexural strength, and flexural modulus were investigated for the composites with polypropylene matrix. The results revealed that eggshells composites had the best values for both tensile and flexural tests while lemon leaves composites had the lowest values. However, the hybrid filler (lemon leaves-eggshells) had intermediate values. The poor properties of lemon leaves were attributed to the agglomeration and weak bonding presented by the morphological analysis of the hybrid composites.

Research paper thumbnail of Predicting the potential of biomass-based composites for sustainable automotive industry using a decision-making model

Lignocellulosic Fibre and Biomass-Based Composite Materials

Research paper thumbnail of Challenges in design of nanocellulose and its composites for different applications

Cellulose-Reinforced Nanofibre Composites

Research paper thumbnail of Medical Implementations of Biopolymers

Advanced Processing, Properties, and Applications of Starch and Other Bio-Based Polymers

Research paper thumbnail of Modern Electrical Applications of Biopolymers

Advanced Processing, Properties, and Applications of Starch and Other Bio-Based Polymers

Research paper thumbnail of Transient behavior of non-toxic natural and hybrid multi-layer desiccant composite materials for water extraction from atmospheric air

Environmental Science and Pollution Research

Research paper thumbnail of Materials selection

Materials Selection for Natural Fiber Composites

Research paper thumbnail of Eco-Friendly Composites for Brake Pads From Agro Waste: A Review

Encyclopedia of Materials: Composites

Research paper thumbnail of A hierarchy weighting preferences model to optimise green composite characteristics for better sustainable bio-products

International Journal of Sustainable Engineering

Research paper thumbnail of Natural Fiber Composites

Kenaf Fibers and Composites

Research paper thumbnail of Development of Photovoltaic Module with Fabricated and Evaluated Novel Backsheet-Based Biocomposite Materials

Materials

Photovoltaic backsheets have considerable impact on the collective performance of solar cells. Ma... more Photovoltaic backsheets have considerable impact on the collective performance of solar cells. Material components should withstand certain temperatures and loads while maintaining high thermal stability under various weather conditions. Solar modules must demonstrate increased reliability, adequate performance, safety, and durability throughout the course of their lifetime. This work presents a novel solar module. The module consists of an innovative polyvinylidene fluoride-short sugar palm fiber (PVDF-SSPF) composite backsheet within its structure. It was electrically and thermally evaluated. The current-voltage characteristics (I-V) were obtained using the solar module analyzer, PROVA 210PV. A thermal evaluation was accomplished using a temperature device, SDL200. The thermal test consisted of two different assessments. The first targeted the surface and backsheet of the developed module to correlate their performance from within. The second assessment compared the thermal perfor...

Research paper thumbnail of Performance tendency and morphological investigations of lignocellulosic tea/polyurethane bio-composite materials

Research paper thumbnail of Hybrid material performance assessment for rocket propulsion

Journal of the Mechanical Behavior of Materials

Fuel based on hybrid green material is of paramount importance for various military and civilian ... more Fuel based on hybrid green material is of paramount importance for various military and civilian purposes. This work presents a novel expert-based multi-criteria hierarchy and decision-making model to evaluate various chemical rocket propulsion technologies with different fuel material types under an uncertain environment. This helps select the most appropriate fuel material types according to the performance requirements considering various evaluation criteria toward achieving better performance economic benefits of the sustainable hybrid green material-based fuel for various applications. Here, the analytical hierarchy process model was utilized to enhance more informative decisions from both numerical and linguistics information regarding the performance of the fuel based on hybrid green material under an uncertain environment. The model considers various simultaneous evaluations and conflicting criteria to practically demonstrate economic, technical, and sustainable issues for t...

Research paper thumbnail of A novel adaptive neuro-fuzzy inference system model to predict the intrinsic mechanical properties of various cellulosic fibers for better green composites

Research paper thumbnail of Introduction to Biobased Composites

Research paper thumbnail of Evaluation and Comparison of Date Palm Fibers with Other Common Natural Fibers

Date Palm Fiber Composites

Research paper thumbnail of Mechanical performance investigation of lignocellulosic coconut and pomegranate / LDPE biocomposite green materials

Journal of the Mechanical Behavior of Materials

Biocomposites have been implemented in various industrial applications. However, it is necessary ... more Biocomposites have been implemented in various industrial applications. However, it is necessary to demonstrate their desired mechanical performance aspects for the near future green products. The aim of this work is to study the efficiency of utilizing both coconut and pomegranate lignocellulosic fiber as green reinforcement types for the low-density polyethylene, LDPE. Desired mechanical performance trends are investigated for the green composites including the tensile strength, tensile modulus, and elongation to break properties as a function of various reinforcement configurations. This was performed to properly optimize the reinforcement conditions to obtain desirable mechanical characteristics of such types of bio-composites for more sustainable functional attributes. Results have demonstrated that the best tensile strength for the coconut/PE was achieved at 20wt.% case with 8.2 MPa, and the best regarding this property for the pomegranate/PE was at 30wt.% with a value close t...

Research paper thumbnail of Physical and Mechanical Inherent Characteristic Investigations of Various Jordanian Natural Fiber Species to Reveal Their Potential for Green Biomaterials

Journal of Natural Fibers

Research paper thumbnail of Performance trends and deteriorations of lignocellulosic grape fiber/polyethylene biocomposites under harsh environment for enhanced sustainable bio-materials

Research paper thumbnail of Tribological and mechanical fracture performance of Mediterranean lignocellulosic fiber reinforced polypropylene composites

Research paper thumbnail of Hybrid green organic/inorganic filler polypropylene composites: Morphological study and mechanical performance investigations

e-Polymers

In this study, the morphological and mechanical performances of hybrid green organic and inorgani... more In this study, the morphological and mechanical performances of hybrid green organic and inorganic filler composites were investigated. Various hybrid reinforcements using natural waste fillers including lemon leaves and eggshells were utilized for the study. The tensile strength, tensile modulus, elongation to break, flexural strength, and flexural modulus were investigated for the composites with polypropylene matrix. The results revealed that eggshells composites had the best values for both tensile and flexural tests while lemon leaves composites had the lowest values. However, the hybrid filler (lemon leaves-eggshells) had intermediate values. The poor properties of lemon leaves were attributed to the agglomeration and weak bonding presented by the morphological analysis of the hybrid composites.

Research paper thumbnail of Predicting the potential of biomass-based composites for sustainable automotive industry using a decision-making model

Lignocellulosic Fibre and Biomass-Based Composite Materials

Research paper thumbnail of Challenges in design of nanocellulose and its composites for different applications

Cellulose-Reinforced Nanofibre Composites

Research paper thumbnail of Medical Implementations of Biopolymers

Advanced Processing, Properties, and Applications of Starch and Other Bio-Based Polymers

Research paper thumbnail of Modern Electrical Applications of Biopolymers

Advanced Processing, Properties, and Applications of Starch and Other Bio-Based Polymers

Research paper thumbnail of Transient behavior of non-toxic natural and hybrid multi-layer desiccant composite materials for water extraction from atmospheric air

Environmental Science and Pollution Research

Research paper thumbnail of Materials selection

Materials Selection for Natural Fiber Composites

Research paper thumbnail of Eco-Friendly Composites for Brake Pads From Agro Waste: A Review

Encyclopedia of Materials: Composites

Research paper thumbnail of A hierarchy weighting preferences model to optimise green composite characteristics for better sustainable bio-products

International Journal of Sustainable Engineering

Research paper thumbnail of Natural Fiber Composites

Kenaf Fibers and Composites

Research paper thumbnail of Development of Photovoltaic Module with Fabricated and Evaluated Novel Backsheet-Based Biocomposite Materials

Materials

Photovoltaic backsheets have considerable impact on the collective performance of solar cells. Ma... more Photovoltaic backsheets have considerable impact on the collective performance of solar cells. Material components should withstand certain temperatures and loads while maintaining high thermal stability under various weather conditions. Solar modules must demonstrate increased reliability, adequate performance, safety, and durability throughout the course of their lifetime. This work presents a novel solar module. The module consists of an innovative polyvinylidene fluoride-short sugar palm fiber (PVDF-SSPF) composite backsheet within its structure. It was electrically and thermally evaluated. The current-voltage characteristics (I-V) were obtained using the solar module analyzer, PROVA 210PV. A thermal evaluation was accomplished using a temperature device, SDL200. The thermal test consisted of two different assessments. The first targeted the surface and backsheet of the developed module to correlate their performance from within. The second assessment compared the thermal perfor...

Research paper thumbnail of Performance tendency and morphological investigations of lignocellulosic tea/polyurethane bio-composite materials

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