Ultrafast carbon nanotubes growth on recycled carbon fibers and their evaluation on interfacial shear strength in reinforced composites.


Journal

Scientific reports
ISSN: 2045-2322
Titre abrégé: Sci Rep
Pays: England
ID NLM: 101563288

Informations de publication

Date de publication:
02 Mar 2021
Historique:
received: 05 01 2021
accepted: 16 02 2021
entrez: 3 3 2021
pubmed: 4 3 2021
medline: 4 3 2021
Statut: epublish

Résumé

The global demand for products manufactured with carbon fibers (CFs) has increased in recent years; however, the waste generated at the end of the product lifetime has also increased. In this research, the impact of the addition of carbon nanotubes (CNTs) on the interlaminated resistance of recycled carbon fibers (RCFs) was studied. In this work, a recycling process of the composite material was applied via thermolysis to obtain the CFs, followed by the growth of CNTs on their surface using the Poptube technique. The recycling temperature were 500 °C and 700 °C; and ferrocene and polypyrrole were used to grow CNTs on CFs surface. CNTs were verified by Raman spectroscopy and scanning electron microscopy (SEM). Finally, to determine the interlaminar resistance, a double cantilever beam (DCB) test was performed. The results indicate that with Poptube technique, CNTs can be grown on RCFs using both impregnations. Thermolysis recycling process at 500 °C allowed CFs without resin residues and without visible damage. The DCB tests showed a decrease in the fracture resistance in mode I loading of 34.9% for the polypyrrole samples and 29.3% for the ferrocene samples compared with the virgin carbon fibers (VCFs) samples with a resistance of 1052.5 J/m

Identifiants

pubmed: 33654160
doi: 10.1038/s41598-021-84419-y
pii: 10.1038/s41598-021-84419-y
pmc: PMC7925646
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

5000

Subventions

Organisme : Fondecyt initiation
ID : 11160285
Organisme : ANID FONDEQUIP
ID : project N°EQM150139
Organisme : FONDECYT REGULAR
ID : 120138
Organisme : PROGRAM OF RESEARCHERS
ID : (UFRO POSTDOCTORALES 2019)

Références

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Auteurs

A Salas (A)

Department of Mechanical Engineering (DIM), Faculty of Engineering, University of Concepción, Edmundo Larenas 219, 4070409, Concepcion, Chile.
Department of Materials Engineering (DIMAT), Interdisciplinary Group of Applied Nanotechnology (GINA), Hybrid Materials Laboratory (HML), Faculty of Engineering, University of Concepcion, 270 Edmundo Larenas, Box 160-C, 4070409, Concepcion, Chile.

C Medina (C)

Department of Mechanical Engineering (DIM), Faculty of Engineering, University of Concepción, Edmundo Larenas 219, 4070409, Concepcion, Chile.

J T Vial (JT)

Department of Mechanical Engineering (DIM), Faculty of Engineering, University of Concepción, Edmundo Larenas 219, 4070409, Concepcion, Chile.

P Flores (P)

Department of Mechanical Engineering (DIM), Faculty of Engineering, University of Concepción, Edmundo Larenas 219, 4070409, Concepcion, Chile.

C Canales (C)

Department of Mechanical Engineering (DIM), Faculty of Engineering, University of Concepción, Edmundo Larenas 219, 4070409, Concepcion, Chile.

V Tuninetti (V)

Departamento de Ingeniería Mecánica, Universidad de la Frontera, Francisco Salazar 01145, 4780000, Temuco, Chile.

A F Jaramillo (AF)

Departamento de Ingeniería Mecánica, Universidad de la Frontera, Francisco Salazar 01145, 4780000, Temuco, Chile.

M F Meléndrez (MF)

Department of Materials Engineering (DIMAT), Interdisciplinary Group of Applied Nanotechnology (GINA), Hybrid Materials Laboratory (HML), Faculty of Engineering, University of Concepcion, 270 Edmundo Larenas, Box 160-C, 4070409, Concepcion, Chile. mmelendrez@udec.cl.
Unidad de Desarrollo Tecnológico, Av. Cordillera N° 2634 Parque Industrial Coronel, Box 4051, 4191996, Concepción, Chile. mmelendrez@udec.cl.
UdeC, Edmundo Larenas 219, Concepción, Chile. mmelendrez@udec.cl.

Classifications MeSH