Design and characterization of natural fiber reinforced cotton-epoxy composites DOI Creative Commons

Sawan Shetty,

Sampath Suranjan Salins,

H. K. Sachidananda

et al.

Deleted Journal, Journal Year: 2024, Volume and Issue: 6(12)

Published: Dec. 3, 2024

Abstract This research paper focuses on the design and fabrication of natural cotton epoxy composites. By combining fibers with resin, study aims to develop composite materials desirable mechanical properties. To evaluate their performance, composites were subjected three-point bending tests, which revealed an average flexural strength 50 MPa a modulus 3.8 GPa, highlighting material’s capacity bear loads. The tests provided insights into composite’s response loads, including its strength, stiffness, failure mechanisms. Post-test analysis using optical microscope that primary modes included delamination fiber breakage. Delamination, characterized by separation layers within composite, breakage, caused fibers’ inability withstand stress exceeding tensile approximately 300 MPa, led crack propagation through material. These findings indicate composite's was primarily driven these provides valuable improving enhancing properties, contributing broader understanding fiber-reinforced behavior under stress.

Language: Английский

Enhancing Wear Resistance, Mechanical Properties of Composite Materials through Sisal and Glass Fiber Reinforcement with Epoxy Resin and Graphite Filler DOI

Suresh Kumar Devendrappa,

Madhu Puttegowda,

Sharath Ballupete Nagaraju

et al.

Journal of the Indian Chemical Society, Journal Year: 2024, Volume and Issue: 101(10), P. 101349 - 101349

Published: Aug. 30, 2024

Language: Английский

Citations

15

Recent developments in the mechanical properties and recycling of fiber‐reinforced polymer composites DOI
Amit Kumar, Saurav Dixit,

Subhav Singh

et al.

Polymer Composites, Journal Year: 2024, Volume and Issue: unknown

Published: Nov. 15, 2024

Abstract Fiber‐reinforced polymer composites (FRPCs) have become integral to various industries due their exceptional strength‐to‐weight ratio, corrosion resistance, and versatility. Recent advancements in the properties recycling of FRPCs reflect significant progress performance sustainability. This paper reviews latest developments FRPC technology, highlighting innovations material formulation, including fiber types, matrix materials, hybrid that enhance mechanical properties. Furthermore, this review emphasizes modification matrices by incorporating graphene, which aims improve chemical bonding interlocking between matrix. Additionally, it addresses recent breakthroughs technologies, focusing on methods such as recycling, developing eco‐friendly matrices. Integrating these lifecycle management FRPCs, reduce environmental impact, support transition towards a circular economy. underscores balance enhancing composite promoting sustainable practices, paving way for more environmentally responsible applications FRPCs. Highlights The different types fiber‐reinforced been thoroughly reviewed. How does graphene affect behavior laminates? Provide systematic correlation comparison fabrication methods, deliberated.

Language: Английский

Citations

12

Exploration and Characterization of Biodegradable Hybrid Composites Reinforced with Areca Leaf Sheath Fiber and Tamarind Seed Powder DOI Creative Commons
G. Ramanan, Elena S. Rogovenko, S. Suresh

et al.

Results in Engineering, Journal Year: 2025, Volume and Issue: 25, P. 104474 - 104474

Published: March 1, 2025

Language: Английский

Citations

2

Development of hemp fiber-reinforced epoxy composite with cobalt oxide nanoparticles for fuel cell and energy storage applications DOI Creative Commons
Thandavamoorthy Raja, Yuvarajan Devarajan

Results in Engineering, Journal Year: 2024, Volume and Issue: 25, P. 103839 - 103839

Published: Dec. 26, 2024

Language: Английский

Citations

6

The Influence of pH Environments on the Long-Term Durability of Coir Fiber-Reinforced Epoxy Resin Composites DOI Open Access
Liangyong Li, Ao Wang, Tianxiang Peng

et al.

Sustainability, Journal Year: 2025, Volume and Issue: 17(1), P. 364 - 364

Published: Jan. 6, 2025

This study investigates the effects of different pH environments on durability coir fiber-reinforced epoxy resin composites (CFRERCs). The CFRERCs were prepared by combining alkali-treated fibers with and exposing them to acidic, alkaline, pure water, seawater for a 12-month corrosion test. results show that an alkaline environment has most significant impact tensile strength CFRERCs, 55.06% reduction after 12 months. acidic causes 44.87% decrease in strength. In contrast, decreases 32.98% 30.03% water environments, respectively. greatest strain occurs environment, 36.45%. about 25.56%, while seawater, reductions are 18.78% 22.65%, terms stiffness, 49.51% reduction, 54.56% decrease. Stiffness 43.39% 36.72% seawater. Field emission scanning electron microscope (FE-SEM) analysis shows corrosive agents cause varying degrees damage microstructure CFRERCs. erode fiber–resin interface, leading delamination fiber breakage. penetrate interior, increasing surface roughness porosity. While also some damage, their relatively mild.

Language: Английский

Citations

0

Enhancing GFRP composites with bamboo fiber and bTiO 2 : a study on mechanical and tribological properties DOI

S. Prashanth,

Rosang Pongen, Y. K. Verma

et al.

Journal of Adhesion Science and Technology, Journal Year: 2025, Volume and Issue: unknown, P. 1 - 28

Published: Feb. 25, 2025

Language: Английский

Citations

0

DLP 3D Printing of Al2O3 and Bi2O3 reinforced photopolymer composites: Radiation Shielding and Mechanical Properties DOI
Yusuf Kavun, Abuzer Açıkgöz, Gökhan Demircan

et al.

Ceramics International, Journal Year: 2025, Volume and Issue: unknown

Published: March 1, 2025

Language: Английский

Citations

0

Preparation and characterization of SiC particle enhanced polyester fabric/epoxy hybrid composites DOI
Gibin George,

Sachin Kumar Balakrishnamurthy,

B. Shivamurthy

et al.

Polymer Composites, Journal Year: 2025, Volume and Issue: unknown

Published: April 4, 2025

Abstract Polyethylene terephthalate (PET) fabric exhibits good tensile strength and toughness, making it a suitable candidate as reinforcement for fiber‐reinforced polymer (FRP) composites. This paper presents the preparation characterization of novel PET fabric/SiC/epoxy hybrid composite. The incorporation SiC enhances flame retardancy composites by reducing burning rate, suppressing dripping combustion, self‐extinguishing at loadings 4 wt.% or above. These properties benefit fire‐safe applications, improving material's ability to resist ignition slow down propagation. Moreover, presence particles improves flexural composites, but elongation break is reduced. fractography analysis reveals improved interaction between epoxy matrix particles. with random shapes sharp corners can form mechanical interlock fabric, enhancing Highlights A composite fabric/SiC reinforced in matrix. new thermally stable flame‐retardant Composite that economical light weight, hardness. Suitable automotive industrial applications.

Language: Английский

Citations

0

Biomass, Phyto-Ash, and Biochar from Beech Wood as Functional Additives for Natural Rubber-Based Elastomer Composites DOI Open Access
Justyna Miedzianowska, Marcin Masłowski, Krzysztof Strzelec

et al.

Materials, Journal Year: 2025, Volume and Issue: 18(7), P. 1659 - 1659

Published: April 4, 2025

The growing interest in renewable resource-based materials has driven efforts to develop elastomeric biocomposites using biomass, phyto-ash, and biochar as fillers. These bio-additives, derived from beech wood through various processing methods, were incorporated into natural rubber (NR) at varying weight ratios. primary objective of this study was assess how the type content each bio-filler influence structural, processing, performance properties biocomposites. Mechanical properties, including tensile strength hardness, evaluated, while crosslink density vulcanizates determined equilibrium swelling solvents. Additionally, composites underwent thermogravimetric analysis (TGA) determine decomposition temperature individual components within polymer matrix. Bio-fillers influenced rheological mechanical with phyto-ash reducing viscosity cross-linking density, biomass increasing stiffness maximum torque. Biochar extended curing time due absorption agents, whereas accelerated vulcanization. tests showed that all bio-filled stiffer than reference, (30 phr) exhibiting highest hardness (45.8 °ShA 49.1 °ShA, respectively) cross-link (2.68 × 10−5 mol/cm3 2.77 mol/cm3, respectively), contributing improved strength, particular case biochar, where TS 17.6 MPa. also examined effects thermal-oxidative aging on samples, providing insights changes under simulated conditions.

Language: Английский

Citations

0

Investigation of lightweight pumice epoxy core woven banana fiber sandwich composites DOI
Kiran Shahapurkar,

M. C. Kiran,

Venkatesh Chenrayan

et al.

Polymer Composites, Journal Year: 2025, Volume and Issue: unknown

Published: April 7, 2025

Abstract Substantial agricultural biomass possessing inherent potential for lignocellulosic fiber is discarded as waste post‐harvest in developing nations. Natural fibers are the right candidate to replace synthetic ones promote a sustainable economy and green environment. The present study concentrates on fabrication of core lightweight pumice particles interspersed among woven banana composites. Epoxy cores were produced by altering quantity content (2.5, 5, 7.5, 10 wt.%) while maintaining constant 40 wt.%. Composites processed via hand layup method. objective effort improve performance composites utilizing distinct qualities pumice, hence customizing characteristics composite material satisfy particular application demands. tensile flexural with an increase core, suggesting advantageous effects reinforcing boost properties. scanning electron micrographs analyzed comprehend microstructure its influence characteristics. numerical simulation results employed corroborate study's conclusions. align well experimental observations, exhibiting 3% reduction accuracy. Highlights Sandwich fabricated pumice/epoxy fibers. Tensile examined simulated. Pumice affects Flexural modulus strength exhibit considerable improvement content.

Language: Английский

Citations

0