Development and performance of graphene oxide reinforced LDPE nanocomposite polymers for 3D printing

Abstract This study evaluated the mechanical properties and the chemical and thermal characteristics of low-density polyethylene (LDPE) nanocomposites reinforced with graphene oxide for manufacturing via 3D printing. LDPE nanocomposites with different graphene oxide (GO) loadings (0.5% and 1.5%) wer...

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Published inREM - International Engineering Journal Vol. 77; no. 2
Main Authors Silva, Bryan M. M., Tegon, Caroline C., Soares, Marcelo M., Gonçalves, Rodolfo Luiz Prazeres, Oliveira, Andressa A., Couto, Antonio Augusto, Massi, Marcos
Format Journal Article
LanguageEnglish
Published Fundação Gorceix 2024
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Abstract Abstract This study evaluated the mechanical properties and the chemical and thermal characteristics of low-density polyethylene (LDPE) nanocomposites reinforced with graphene oxide for manufacturing via 3D printing. LDPE nanocomposites with different graphene oxide (GO) loadings (0.5% and 1.5%) were processed by a single-screw extruder. To characterize the pre-injected material, Fourier transform infrared spectroscopy (FTIR) and thermal characterization with thermogravimetry (TGA) were used. The injected material was also characterized with mechanical impact and traction tests. The results showed that incorporating GO into the polymeric matrix added hydroxyl groups to the matrix structure, with a 39.13% increase in Young's modulus for LDPE-1.5%wtGO samples. Mechanical tests of 3D printed samples showed that, with an increase in the amount of GO in the polymer matrix, the composite loses ductility, enabling its use in 3D printing technologies and thus encouraging new studies on printed materials for various applications.
AbstractList Abstract This study evaluated the mechanical properties and the chemical and thermal characteristics of low-density polyethylene (LDPE) nanocomposites reinforced with graphene oxide for manufacturing via 3D printing. LDPE nanocomposites with different graphene oxide (GO) loadings (0.5% and 1.5%) were processed by a single-screw extruder. To characterize the pre-injected material, Fourier transform infrared spectroscopy (FTIR) and thermal characterization with thermogravimetry (TGA) were used. The injected material was also characterized with mechanical impact and traction tests. The results showed that incorporating GO into the polymeric matrix added hydroxyl groups to the matrix structure, with a 39.13% increase in Young's modulus for LDPE-1.5%wtGO samples. Mechanical tests of 3D printed samples showed that, with an increase in the amount of GO in the polymer matrix, the composite loses ductility, enabling its use in 3D printing technologies and thus encouraging new studies on printed materials for various applications.
Author Gonçalves, Rodolfo Luiz Prazeres
Tegon, Caroline C.
Massi, Marcos
Oliveira, Andressa A.
Soares, Marcelo M.
Silva, Bryan M. M.
Couto, Antonio Augusto
AuthorAffiliation Universidade Presbiteriana Mackenzie
AuthorAffiliation_xml – name: Universidade Presbiteriana Mackenzie
Author_xml – sequence: 1
  givenname: Bryan M. M.
  orcidid: 0000-0002-7815-569X
  surname: Silva
  fullname: Silva, Bryan M. M.
  organization: Universidade Presbiteriana Mackenzie, Brasil
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  givenname: Caroline C.
  orcidid: 0000-0001-5155-2698
  surname: Tegon
  fullname: Tegon, Caroline C.
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  givenname: Marcelo M.
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  surname: Soares
  fullname: Soares, Marcelo M.
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  givenname: Rodolfo Luiz Prazeres
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  givenname: Marcos
  orcidid: 0000-0002-7117-8039
  surname: Massi
  fullname: Massi, Marcos
  organization: Universidade Presbiteriana Mackenzie, Brasil
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Issue 2
Keywords low-density polyethylene (LDPE)
3D printing
graphene oxide (GO)
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Snippet Abstract This study evaluated the mechanical properties and the chemical and thermal characteristics of low-density polyethylene (LDPE) nanocomposites...
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SubjectTerms 3D printing
ENGINEERING, MECHANICAL
GEOLOGY
graphene oxide (GO)
low-density polyethylene (LDPE)
MECHANICS
METALLURGY & METALLURGICAL ENGINEERING
Title Development and performance of graphene oxide reinforced LDPE nanocomposite polymers for 3D printing
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