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Thermomechanical properties of stereolithographic 3D-printed zinc oxide nanocomposites

  • Vincent Joseph Garcia,
  • Xiang Cheng,
  • Lihan Rong,
  • Tania E. Lara-Ceniceros,
  • Emmanuel Ricohermoso III,
  • José Bonilla-Cruz,
  • Richard D. Espiritu,
  • Rigoberto C. Advincula

摘要

Stereolithography (SLA) is a highly versatile additive manufacturing technique that utilizes various ink formulations to fabricate 3D-printed nanocomposite structures with desired properties. Zinc oxide (ZnO) is a promising candidate due to its excellent mechanical and thermal stability, and compatibility with various polymeric matrices. In this work, varying ink formulations containing ZnO nanoparticles, along with employing appropriate post-printing curing parameters to fabricate SLA 3D-printed acrylate-based nanocomposites with improved mechanical and thermal properties, were reported. This study can significantly contribute to expanding its potential use in practical applications such as biomedical and structural applications.

Graphical Abstract