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Flexural and thermal characterization of epoxy composites reinforced with nanoparticles synthesized from waste walnut husk with green synthesis method

  • 02-06-2023
  • Original Article
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Abstract

The article delves into the flexural and thermal characterization of epoxy composites reinforced with nanoparticles derived from waste walnut husks. By employing a green synthesis method, the study synthesizes Ce2O3 and SrO nanoparticles and incorporates them into epoxy resin at varying weight ratios. The research involves extensive characterization through SEM, FTIR, TGA, DSC, and flexural tests, revealing significant improvements in the mechanical and thermal properties of the composites. Notably, the 0.3% SrO-reinforced specimens showed a 21% increase in flexural strength, and the TGA analysis indicated enhanced thermal stability with specific reinforcement ratios. These findings underscore the potential of waste-derived nanoparticles in producing high-performance, eco-friendly composite materials, making the study a compelling read for those interested in sustainable materials science and composite engineering.

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Title
Flexural and thermal characterization of epoxy composites reinforced with nanoparticles synthesized from waste walnut husk with green synthesis method
Authors
Gülşah Alar Oner
Hayrunnisa Nadaroglu
Volkan Acar
Soner Gok
Publication date
02-06-2023
Publisher
Springer Berlin Heidelberg
Published in
Biomass Conversion and Biorefinery / Issue 17/2024
Print ISSN: 2190-6815
Electronic ISSN: 2190-6823
DOI
https://doi.org/10.1007/s13399-023-04364-w
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