Fransisco Medina, Ph.D.
Affiliations: | 2013 | Matl. Sci. And Engin. | University of Texas at El Paso, El Paso, TX, United States |
Area:
Materials Science Engineering, Industrial EngineeringGoogle:
"Fransisco Medina"Parents
Sign in to add mentorRyan B. Wicker | grad student | 2013 | UT El Paso | |
(Reducing metal alloy powder costs for use in powder bed fusion additive manufacturing: Improving the economics for production.) |
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Publications
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Cheng XY, Li SJ, Murr LE, et al. (2012) Compression deformation behavior of Ti-6Al-4V alloy with cellular structures fabricated by electron beam melting. Journal of the Mechanical Behavior of Biomedical Materials. 16: 153-62 |
Murr LE, Gaytan SM, Martinez E, et al. (2012) Next generation orthopaedic implants by additive manufacturing using electron beam melting. International Journal of Biomaterials. 2012: 245727 |
Murr LE, Amato KN, Li SJ, et al. (2011) Microstructure and mechanical properties of open-cellular biomaterials prototypes for total knee replacement implants fabricated by electron beam melting. Journal of the Mechanical Behavior of Biomedical Materials. 4: 1396-411 |
Nuzzo MS, Posner M, Warme WJ, et al. (2011) Compression force and pullout strength comparison of bioabsorbable implants for osteochondral lesion fixation. American Journal of Orthopedics (Belle Mead, N.J.). 40: E61-3 |
Kung EO, Les AS, Medina F, et al. (2011) In vitro validation of finite-element model of AAA hemodynamics incorporating realistic outlet boundary conditions. Journal of Biomechanical Engineering. 133: 041003 |
Kung EO, Les AS, Figueroa CA, et al. (2011) In vitro validation of finite element analysis of blood flow in deformable models. Annals of Biomedical Engineering. 39: 1947-60 |
Murr LE, Gaytan SM, Medina F, et al. (2010) Next-generation biomedical implants using additive manufacturing of complex, cellular and functional mesh arrays. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 368: 1999-2032 |
Murr LE, Quinones SA, Gaytan SM, et al. (2009) Microstructure and mechanical behavior of Ti-6Al-4V produced by rapid-layer manufacturing, for biomedical applications. Journal of the Mechanical Behavior of Biomedical Materials. 2: 20-32 |