Advanced search
1 file | 11.55 MB Add to list

Comparative analysis of elastic polyester sportswear fabrics with printed graphene patterns

(2023) MATERIALS. 16(5).
Author
Organization
Abstract
In this study two elastic polyester fabrics differentiated by a graphene-printed pattern, called honeycomb (HC) and spider web (SW), were analyzed with a focus on their thermal, mechanical, moisture management and sensorial properties, aiming to identify the fabric with the most elevated heat dissipation and comfort for sportswear. The shape of the graphene-printed circuit did not lead to significant difference between the mechanical properties of the fabrics SW and HC assessed by the Fabric Touch Tester (FTT). Fabric SW outperformed fabric HC with respect of drying time, air permeability, moisture, and liquid management properties. On the other hand, both the Infrared (IR) thermography and FTT-predicted warmness clearly showed that fabric HC dissipates heat faster on its surface along the graphene circuit. This fabric was also predicted by the FTT as smoother and softer than fabric SW and had a better overall fabric hand. The results revealed that both graphene patterns resulted in comfortable fabrics with great potential applications in sportswear fields, in specific use scenario’s.
Keywords
General Materials Science, graphene-printed patterns, sportswear fabrics, thermophysiological comfort, sensorial comfort

Downloads

  • materials-16-02028.pdf
    • full text (Published version)
    • |
    • open access
    • |
    • PDF
    • |
    • 11.55 MB

Citation

Please use this url to cite or link to this publication:

MLA
Vasile, Simona, et al. “Comparative Analysis of Elastic Polyester Sportswear Fabrics with Printed Graphene Patterns.” MATERIALS, vol. 16, no. 5, 2023, doi:10.3390/ma16052028.
APA
Vasile, S., Georgievska, M., Copot, C., & De Raeve, A. (2023). Comparative analysis of elastic polyester sportswear fabrics with printed graphene patterns. MATERIALS, 16(5). https://doi.org/10.3390/ma16052028
Chicago author-date
Vasile, Simona, Magdalena Georgievska, Cosmin Copot, and Alexandra De Raeve. 2023. “Comparative Analysis of Elastic Polyester Sportswear Fabrics with Printed Graphene Patterns.” MATERIALS 16 (5). https://doi.org/10.3390/ma16052028.
Chicago author-date (all authors)
Vasile, Simona, Magdalena Georgievska, Cosmin Copot, and Alexandra De Raeve. 2023. “Comparative Analysis of Elastic Polyester Sportswear Fabrics with Printed Graphene Patterns.” MATERIALS 16 (5). doi:10.3390/ma16052028.
Vancouver
1.
Vasile S, Georgievska M, Copot C, De Raeve A. Comparative analysis of elastic polyester sportswear fabrics with printed graphene patterns. MATERIALS. 2023;16(5).
IEEE
[1]
S. Vasile, M. Georgievska, C. Copot, and A. De Raeve, “Comparative analysis of elastic polyester sportswear fabrics with printed graphene patterns,” MATERIALS, vol. 16, no. 5, 2023.
@article{01H39FFZKAB3V1WK2WG7ER2D7E,
  abstract     = {{In this study two elastic polyester fabrics differentiated by a graphene-printed pattern, called honeycomb (HC) and spider web (SW), were analyzed with a focus on their thermal, mechanical, moisture management and sensorial properties, aiming to identify the fabric with the most elevated heat dissipation and comfort for sportswear. The shape of the graphene-printed circuit did not lead to significant difference between the mechanical properties of the fabrics SW and HC assessed by the Fabric Touch Tester (FTT). Fabric SW outperformed fabric HC with respect of drying time, air permeability, moisture, and liquid management properties. On the other hand, both the Infrared (IR) thermography and FTT-predicted warmness clearly showed that fabric HC dissipates heat faster on its surface along the graphene circuit. This fabric was also predicted by the FTT as smoother and softer than fabric SW and had a better overall fabric hand. The results revealed that both graphene patterns resulted in comfortable fabrics with great potential applications in sportswear fields, in specific use scenario’s.}},
  articleno    = {{2028}},
  author       = {{Vasile, Simona and Georgievska, Magdalena and Copot, Cosmin and De Raeve, Alexandra}},
  issn         = {{1996-1944}},
  journal      = {{MATERIALS}},
  keywords     = {{General Materials Science,graphene-printed patterns,sportswear fabrics,thermophysiological comfort,sensorial comfort}},
  language     = {{eng}},
  number       = {{5}},
  pages        = {{17}},
  title        = {{Comparative analysis of elastic polyester sportswear fabrics with printed graphene patterns}},
  url          = {{http://doi.org/10.3390/ma16052028}},
  volume       = {{16}},
  year         = {{2023}},
}

Altmetric
View in Altmetric
Web of Science
Times cited: