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FERNANDO GILBERTO TORRES GARCIA

FERNANDO GILBERTO TORRES GARCIA

FERNANDO GILBERTO TORRES GARCIA

DOCTOR OF PHILOSOPHY IN MECHANICAL ENGINEERING, THE VICTORIA UNIVERSITY OF MANCHESTER

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Master of Philosophy. Mechanical Engineering (UNIVERSIDAD DE MANCHESTER-GRAN BRETANA)

Ingeniero Mecánico
DOCENTE ORDINARIO - PRINCIPAL
Tiempo parcial por asignaturas (TPA)
Departamento Académico de Ingeniería - Sección Ingeniería Mecánica

Publicaciones

Se encontraron 196 publicaciones

TRONCOSO, O. P.; TORRES, F. G.; NAKAMATSU, J.; BOCCACCINI, A.(2006). Processing and characterisation of starch based tissue engineering scaffoldS. En International Symposium on Bioplastics and Natural Fiber Composites. -.
NAKAMATSU, J.; TORRES, F. G.; TRONCOSO, O. P.; MIN-LIN, Y.; BOCCACCINI, A.(2006). Processing and Characterization of Porous Structures from Chitosan and Starch for Tissue Engineering Scaffolds. Biomacromolecules. Volumen: 7. (pp. 3345 - 3355). Recuperado de: http://dx.doi.org/10.1021/bm0605311
TORRES, F. G.; CUBILLAS, M.; QUINTANA, O. A.(2006). Sintering of non-spherical polyethylene particles. Polymers and Polymer Composites. Volumen: 14. (pp. 503 - 513).
TRONCOSO, O. P.; TORRES, F. G.; BOCCACCINI, R.(2006). Starch porous structures for tissue engineering applications processed by a microwave foaming technique (MWF). En International Workshop Frontiers In Materials Research III. -.
GÓMEZ, C.; TORRES, F. G.; NAKAMATSU, J.; ARROYO, O. H.(2006). Thermal and Structural Analysis of Natural Fiber Reinforced Starch-Based Biocomposites. International journal of polymeric materials. Volumen: 55. (pp. 893 - 907). Recuperado de: http://dx.doi.org/10.1080/00914030500522547
TORRES, F. G.; Boccaccini, A.; NAKAMATSU, J.; TRONCOSO, O. P.; Quintana, O.(2005). Development of porous structures from natural for tissue engineering applications.. En Professor Larry Hench Retirement Symposium. Imperial College London.
TORRES, F. G.(2005). INGENIERÍA DE LOS MATERIALES COMPUESTOS-PRFV. FONDO EDITORIAL PUCP.
GRANDE, C. J. y TORRES, F. G.(2005). Investigation of fiber organization and damage during single screw extrusion of natural fiber reinforced thermoplastics. Advances in polymer technology. Volumen: 24. (pp. 145 - 156). Recuperado de: http://dx.doi.org/10.1002/adv.20037