Logotipo del repositorio
  • English
  • Español
  • Iniciar sesión
    ¿Nuevo Usuario? Pulse aquí para registrarse¿Has olvidado tu contraseña?
  • Iniciar sesión
    ¿Nuevo Usuario? Pulse aquí para registrarse¿Has olvidado tu contraseña?
Logotipo del repositorio
  • Comunidades & Colecciones
  • Producción de Investigación
  • Financiamiento & Proyectos
  • Personas
  • Estadísticas
  • English
  • Español
  1. Inicio
  2. CRIS
  3. Publication
  4. Liquid Crystal Display-Based 3D Printing of Polylactic Acid/Microcrystalline Cellulose Composites
 
  • Detalles
Opciones

Liquid Crystal Display-Based 3D Printing of Polylactic Acid/Microcrystalline Cellulose Composites

Revista
Polymers
ISSN
20734360
Fecha de publicación
2025-12-01
Autor
da Silva, Joyce Alves 
Reis do Nascimento, Nayra 
Garcia del Pino, Gilberto 
Valín, José Luis 
Valin Fernández, Meylí 
Veras da Silva, Wanderson 
de Macedo Neto, José Costa 
Scopus ID
SCOPUS_ID:105026003811
DOI
10.3390/polym17243311
Acceso oficial vía DOI
https://doi.org/10.3390/polym17243311
Resumen
This study explores the production of composites based on polylactic acid (PLA) reinforced with microcrystalline cellulose (MCC), using Additive Manufacturing technology via LCD. Polylactic acid, being biodegradable and possessing good mechanical properties, was combined with microcrystalline cellulose, which has a high modulus of elasticity, aiming to further improve its performance. Composites with different microcrystalline cellulose contents (1, 3, 5, and 10%) were obtained and compared to pure PLA. Characterization involved thermal, mechanical, morphological, and structural tests. The results showed that the addition of microcrystalline cellulose increases hardness, tensile strength, and modulus of elasticity. Scanning electron microscopy revealed more heterogeneous fracture surfaces in the composites compared to pure polylactic acid. Thermal stability varies according to the microcrystalline cellulose content, with increased degradation observed in some samples, reaching 1%. Increased water absorption was also detected with increasing microcrystalline cellulose concentration, indicating potential limitations in humid environments. The incorporation of microcrystalline cellulose, especially at moderate concentrations such as 3%, proved to be an effective strategy for improving the mechanical properties of polylactic acid.
Derechos de acceso
open access
Materias

3D printing

microcrystalline cell...

polylactic acid

 

Dirección Sistema de Biblioteca
Vicerrectoría Académica
Pontificia Universidad Católica de Valparaíso
Avenida Brasil 2950 - Código postal 2374631 - Valparaíso - Chile
https://biblioteca.pucv.cl

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Configuración de cookies
  • Política de privacidad
  • Acuerdo de usuario final
  • Enviar Sugerencias