Study on the effect of ZnO nanoparticles embedded ramie fiber reinforced epoxy matrix composite – A novel material for sustainable development DOI Creative Commons

Elavarasan Krishnasamy,

Saranraj Iyyanar,

Vinayagamoorthy Munusamy

et al.

E3S Web of Conferences, Journal Year: 2024, Volume and Issue: 588, P. 01017 - 01017

Published: Jan. 1, 2024

This study explores the potential of Zinc Oxide (ZnO) nanoparticles as fillers in ramie fiber reinforced epoxy composites to develop materials that align with sustainable development goals. We systematically varied ZnO nanoparticle content across three distinct samples are 5g, 10g, and 15g investigate their effects on mechanical thermal properties composites. Mechanical testing included tensile, flexural, impact strength assessments, while stability was evaluated through analysis. Additionally, Scanning Electron Microscopy (SEM) employed analyze microstructural changes induced by varying concentrations. Preliminary results indicate increasing concentration enhances both composites, suggesting a reinforcing effect polymer matrix. The sample displayed most significant improvement performance, confirming create more durable thermally stable materials.

Language: Английский

Nano-Innovations for a Greener Future: Exploring the Intersection of Nanotechnology and Environmental Sustainability DOI Creative Commons
P. Hemalatha, Kuppusamy Kanagaraj, R. Kannan

et al.

E3S Web of Conferences, Journal Year: 2024, Volume and Issue: 588, P. 01018 - 01018

Published: Jan. 1, 2024

The integration of nanotechnology into natural maintainability hones speaks to a essential progression in our journey for greener future. This survey article, “Nano-Innovations Greener Future: Investigating the Crossing point Nanotechnology and Natural Maintainability,” investigates transformative applications over different spaces, counting vitality generation, contamination control, asset administration. We dig most recent headways nano-enhanced sun powered cells, wind turbines, capacity arrangements that increment productivity diminish costs. audit too looks at nanotechnology’s part moderation through imaginative nano-sensors nano-adsorbents, which offer tall accuracy proficiency evacuating poisons from discuss, water, soil. Besides, we talk about application squander administration agribusiness, highlighting nano-fertilizers nano-pesticides optimize utilize minimize impacts. Looking ahead, article recognizes key challenges future inquire bearings, emphasizing require economical nano-manufacturing forms comprehensive administrative systems saddle complete potential progressing maintainability. investigation underscores critical benefits nano-innovations can give, setting arrange considerable environmental enhancements interest supportability.

Language: Английский

Citations

0

Study on the effect of CuO influenced kenaf fiber reinforced epoxy composite – A novel material for secondary structural applications DOI Creative Commons
K. Karthik,

Vinayagamoorthy Munusamy,

Senthilkumar Nangan

et al.

E3S Web of Conferences, Journal Year: 2024, Volume and Issue: 588, P. 03024 - 03024

Published: Jan. 1, 2024

This study investigates the effects of copper oxide (CuO) particles on mechanical and thermal properties kenaf fibre reinforced epoxy composites, suggesting a new material suitable for structural applications. Comprehensive tests, including Thermogravimetric Investigation (TGA), weakness testing, Checking Electron Microscopy (SEM), were conducted to evaluate performance enhancements provided by incorporation CuO. The TGA has revealed that CuO significantly enhance stability composites. Among many sample C (6g CuO) highest resistance, retaining 17% its weight at 500°C, which is higher than other tests. fatigue testing demonstrated composites exhibited remarkable particularly Test C, maintained stress 14 MPa even after 15,000 cycles, indicating superior durability under cyclic loading circumstances. SEM detailed microstructural observations, showing consistent distribution strong bonding between fibres matrix, resistance failure.

Language: Английский

Citations

0

The Nano Frontier: Emerging Technologies for Environmental Remediation and Sustainable Energy DOI Creative Commons

Monali Priyadarshini,

Saranraj Iyyanar, Kuppusamy Kanagaraj

et al.

E3S Web of Conferences, Journal Year: 2024, Volume and Issue: 588, P. 01016 - 01016

Published: Jan. 1, 2024

In the midst of heightening natural challenges and a basic surge in worldwide vitality requests, nanotechnology rises as significant wilderness for maintainable arrangements. This audit investigates imaginative potential tending to remediation improving effectiveness, subsequently progressing advancement objectives. We look at cutting-edge applications nanomaterials that play transformative parts detoxifying toxins through nano-adsorbents, nano-catalysts, nano-enhanced films, reinforcing generation with nanostructured solar powered cells, upgraded capacity frameworks, productive hydrogen strategies. These nano-engineered arrangements not it were guarantee raise cleanup endeavors by successfully evacuating breaking down poisons but moreover point revolutionize frameworks effectiveness maintainability gathering capacity. The blend, arrangement, lifecycle administration these nanotechnologies are talked about, highlighting their reshape methodologies utilization universally. As we dig into domains nano- enhanced advancements, this survey underscores part continuous investigate, versatile applications, eco-friendly hones leveraging future.

Language: Английский

Citations

0

Study on the effect of ZnO nanoparticles embedded ramie fiber reinforced epoxy matrix composite – A novel material for sustainable development DOI Creative Commons

Elavarasan Krishnasamy,

Saranraj Iyyanar,

Vinayagamoorthy Munusamy

et al.

E3S Web of Conferences, Journal Year: 2024, Volume and Issue: 588, P. 01017 - 01017

Published: Jan. 1, 2024

This study explores the potential of Zinc Oxide (ZnO) nanoparticles as fillers in ramie fiber reinforced epoxy composites to develop materials that align with sustainable development goals. We systematically varied ZnO nanoparticle content across three distinct samples are 5g, 10g, and 15g investigate their effects on mechanical thermal properties composites. Mechanical testing included tensile, flexural, impact strength assessments, while stability was evaluated through analysis. Additionally, Scanning Electron Microscopy (SEM) employed analyze microstructural changes induced by varying concentrations. Preliminary results indicate increasing concentration enhances both composites, suggesting a reinforcing effect polymer matrix. The sample displayed most significant improvement performance, confirming create more durable thermally stable materials.

Language: Английский

Citations

0