Javascript must be enabled to continue!
Tribological Characterization of Epoxy Hybrid Composites Reinforced with Al2O3 Nanofiller
View through CrossRef
The addition of fillers to polymer composites induces a positive influence on the mechanical and tribological properties of the hybrid composites. These properties can be validated for possible uses such as automobile, construction, shipping, aerospace, sports equipment, electronics, and biomedical domains. In the present research, epoxy matrix reinforced with nylon-6 fibers and glass fibers were prepared using the solution blend technique. Alumina nanoparticles are added as fillers to enhance the properties of epoxy hybrid composites. The large surface area of interaction of nanofillers exhibits better adhesion between matrix and fibers of composites, and it significantly affects the various properties of composites. The tribological characteristics of fabricated epoxy hybrid composites were evaluated under various parameters and conditions. The results revealed that the addition of nanofiller significantly reduces the wear loss of epoxy hybrid nanocomposites. The wear resistance of epoxy hybrid composites increased with increase in addition of nanofiller up to 1.0%, and it slightly decreased with the further addition of filler. The Taguchi analysis was carried out for the least coefficient of friction and specific wear rate. The analysis found that the specific wear rate and coefficient of friction mainly depend on load, followed by speed and nanofiller. The fractured and worn surface of Al2O3-filled epoxy hybrid composites was analysed using SEM.
Title: Tribological Characterization of Epoxy Hybrid Composites Reinforced with Al2O3 Nanofiller
Description:
The addition of fillers to polymer composites induces a positive influence on the mechanical and tribological properties of the hybrid composites.
These properties can be validated for possible uses such as automobile, construction, shipping, aerospace, sports equipment, electronics, and biomedical domains.
In the present research, epoxy matrix reinforced with nylon-6 fibers and glass fibers were prepared using the solution blend technique.
Alumina nanoparticles are added as fillers to enhance the properties of epoxy hybrid composites.
The large surface area of interaction of nanofillers exhibits better adhesion between matrix and fibers of composites, and it significantly affects the various properties of composites.
The tribological characteristics of fabricated epoxy hybrid composites were evaluated under various parameters and conditions.
The results revealed that the addition of nanofiller significantly reduces the wear loss of epoxy hybrid nanocomposites.
The wear resistance of epoxy hybrid composites increased with increase in addition of nanofiller up to 1.
0%, and it slightly decreased with the further addition of filler.
The Taguchi analysis was carried out for the least coefficient of friction and specific wear rate.
The analysis found that the specific wear rate and coefficient of friction mainly depend on load, followed by speed and nanofiller.
The fractured and worn surface of Al2O3-filled epoxy hybrid composites was analysed using SEM.
Related Results
Experimental analysis of epoxy-based functionally graded composite materials
Experimental analysis of epoxy-based functionally graded composite materials
Functionally graded materials (FGMs) are crucial in the mechanical and aerospace industries for improving material quality by combining distinct qualities to create composite subst...
Advancing mechanical performance in sustainable engineering: Synergistic effects of graphene oxide/nano‐silica hybrid nanofiller via latex coagulation in natural rubber composites
Advancing mechanical performance in sustainable engineering: Synergistic effects of graphene oxide/nano‐silica hybrid nanofiller via latex coagulation in natural rubber composites
AbstractThis research investigates the utilization of a hybrid nanofiller comprising graphene oxide (GO) and amine‐modified nano silica in natural rubber matrix via the latex stage...
Halloysite Nanotubes Reinforced Epoxy/Epoxy Acrylate Blends: Unlocking the Potential of Hybrid Nanocomposites
Halloysite Nanotubes Reinforced Epoxy/Epoxy Acrylate Blends: Unlocking the Potential of Hybrid Nanocomposites
Unlocking the potential of polymer blends requires innovative strategies that transcend simple mixing. This study presents a novel approach by creating hybrid blends of epoxy and s...
Design and Development of Hybrid Al2O3 Based Composites with Toughening and Self-Lubricating Second-Phase Inclusions
Design and Development of Hybrid Al2O3 Based Composites with Toughening and Self-Lubricating Second-Phase Inclusions
Polycrystalline ceramics, such as alumina (Al2O3), are brittle and they generally wear by fracture mechanism, which limits their potential in tribological applications. In the pres...
Preparation and characterization of nanocomposites based on polylactide manufactured by reactive extrusion-calendering : thermal, rheological, mechanical and fracture properties
Preparation and characterization of nanocomposites based on polylactide manufactured by reactive extrusion-calendering : thermal, rheological, mechanical and fracture properties
PLA nanocomposites sheets that is rnodified with multi-functional epoxide reactive agent (Joncryi4300F, BASF, Germany) were manufacturad using reactive extrusion in a pilot plant. ...
Fabrication and property analysis of treated and untreated bagasse powder-reinforced epoxy resin composites
Fabrication and property analysis of treated and untreated bagasse powder-reinforced epoxy resin composites
Bagasse fiber from sugarcane waste is used with epoxy resin to make natural composites. The raw fibers are treated chemically to improve compatibility and adherence with the epoxy ...
Evaluation of Mechanical and Tribological Properties of Corn Cob-Reinforced Epoxy-Based Composites—Theoretical and Experimental Study
Evaluation of Mechanical and Tribological Properties of Corn Cob-Reinforced Epoxy-Based Composites—Theoretical and Experimental Study
Epoxy is considered to be the most popular polymer and is widely used in various engineering applications. However, environmental considerations require natural materials-based epo...
DISCOLORATION OF NANOHYBRID AND NANOFILLER RESIN COMPOSITES AFTER EXPOSURE TO TURMERIC
DISCOLORATION OF NANOHYBRID AND NANOFILLER RESIN COMPOSITES AFTER EXPOSURE TO TURMERIC
Background: Recently, the demand of aesthetic restorative has greatly increased and enchourages the development of composite resin material. The latest technology of composite is n...

