AVILES CETINA, FRANCIS
CIENCIAS TECNOLÓGICAS · Nivel 3
Desde 2006 es Scientist en Centro de Investigación Científica de Yucatán
Dr. Francis Avilés is a Scientist at the Materials Department of the “Scientific Research Center of Yucatan” (CICY for its Spanish acronym), located in Mérida, Mexico. He is a Mechanical Engineer with a Master degree in Applied Physics and a...
Dr. Francis Avilés is a Scientist at the Materials Department of the “Scientific Research Center of Yucatan” (CICY for its Spanish acronym), located in Mérida, Mexico. He is a Mechanical Engineer with a Master degree in Applied Physics and a PhD in solid body mechanics. He received his PhD in 2005 from Florida Atlantic University, working on the mechanics of composite materials and sandwich structures, and worked as a Research Associate at the Center for Composite Materials of the University of Delaware. He returned to Mexico in 2006 and worked as scientific researcher thereafter. His current research interests focus on the mechanics, electro-mechanics and multifunctional properties of composite materials, piezoresistive and thermoresistive properties of nanostructured polymer composites, carbon nanostructures, and smart materials.
Información*
| Nombre | FRANCIS AVILES CETINA |
|---|---|
| Área | INGENIERÍAS Y DESARROLLO TECNOLÓGICO |
| Campo | CIENCIAS TECNOLÓGICAS |
| Disciplina | TECNOLOGÍA DE MATERIALES |
| Especialidad | RESISTENCIA DE MATERIALES |
| CVU | 98034 |
| Institución | |
|---|---|
| Dependencia | SIN INFORMACIÓN |
| Entidad | YUCATAN |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2024 |
| Fin: 31/12/2028 |
* Información del primer trimestre de 2026.
Fuente: SECIHTI.
Publicaciones ORCID
- 2026
- Enhancing multilayer graphene/glass fiber interfacial bonding and dispersion through oxidative functionalization Composite Interfaces
- Effect of small concentrations of graphenic sheets on the dielectric strength of epoxy Current Applied Physics
- Prediction of elastic properties of woven polymer composites using micromechanical models and measured microstructural parameters Journal of Reinforced Plastics and Composites
- Low-Power System for Spatial Tactile Detection Using a Self-Sensing Nanocomposite With On-Device Adaptive Regularization IEEE Transactions on Instrumentation and Measurement
- 2025
- Electrical monitoring of structural health of laminated composite panels under compressive loading using carbon nanotube yarns Composites Communications
- Electrical monitoring of structural health of multiscale hierarchical composites using fibers modified by graphenic sheets or carbon nanotubes Composites Communications
- Finite Element Investigation of the Influence of Porosity and Resin Infiltration on the Electrical Conductivity of Carbon Nanotube Yarns Advanced Engineering Materials
- 2024
- Electromechanical response of multilayer graphene sheet/polypropylene nanocomposites and its relationship with the graphene sheet physicochemical properties Smart Materials and Structures
- Understanding the radial contraction and axial mechanical responses of carbon nanotube yarns under axial tensile loading Carbon
- Mechanical, Thermal, and Physicochemical Properties of Filaments of Poly (Lactic Acid), Polyhydroxyalkanoates and Their Blend for Additive Manufacturing Polymers