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Evaluation of the Mechanical Behavior of Biomedical Materials in a Cryogenic Environment

  • Victor Daniel Rodríguez-Gaspar,
  • Juan Alfonso Beltrán-Fernández,
  • Mauricio González Rebattú y González,
  • Alejandro González Rebattú y González,
  • Juan Carlos Hermida-Ochoa,
  • Alejandro Tonatiu Velázquez-Sánchez,
  • Erik Omar Alvarado-Alcántara,
  • Karen Pamela Vázquez-Thierry,
  • Veronica Guzman-Mercado

摘要

The evolution of societies is largely linked to the production capacity for the manufacture of materials that served human beings to survive and improve their quality of life. In these times, where speed and fidelity prevail to make new concepts or ideas, new manufacturing technologies also arise with a tremendous impact. Currently, additive manufacturing technology (prototyping) plays important roles in various sectors of the industry, especially the biomedical field, which is a field of wide application in the use of implants through the design and implementation of the same made with polymeric materials reinforced with fibers or nanotubes made of carbon and manufactured by means of the 3D printing method. The research work presented here is about the implementation of a printing pattern for a subsequent thermo-mechanical study under specific operating conditions until a cryogenic environment is obtained and its main mechanical properties are determined.