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Featured researches published by D.H. Hernandez.


Philosophical Transactions of the Royal Society A | 2010

Next-generation biomedical implants using additive manufacturing of complex, cellular and functional mesh arrays

L. E. Murr; Sara M. Gaytan; F. Medina; H. Lopez; E. Martinez; B.I. Machado; D.H. Hernandez; L. Martinez; M.I. Lopez; R. B. Wicker; J. Bracke

In this paper, we examine prospects for the manufacture of patient-specific biomedical implants replacing hard tissues (bone), particularly knee and hip stems and large bone (femoral) intramedullary rods, using additive manufacturing (AM) by electron beam melting (EBM). Of particular interest is the fabrication of complex functional (biocompatible) mesh arrays. Mesh elements or unit cells can be divided into different regions in order to use different cell designs in different areas of the component to produce various or continually varying (functionally graded) mesh densities. Numerous design elements have been used to fabricate prototypes by AM using EBM of Ti-6Al-4V powders, where the densities have been compared with the elastic (Young) moduli determined by resonant frequency and damping analysis. Density optimization at the bone–implant interface can allow for bone ingrowth and cementless implant components. Computerized tomography (CT) scans of metal (aluminium alloy) foam have also allowed for the building of Ti-6Al-4V foams by embedding the digital-layered scans in computer-aided design or software models for EBM. Variations in mesh complexity and especially strut (or truss) dimensions alter the cooling and solidification rate, which alters the α-phase (hexagonal close-packed) microstructure by creating mixtures of α/α′ (martensite) observed by optical and electron metallography. Microindentation hardness measurements are characteristic of these microstructures and microstructure mixtures (α/α′) and sizes.


Journal of The Mechanical Behavior of Biomedical Materials | 2009

Microstructure and mechanical behavior of Ti–6Al–4V produced by rapid-layer manufacturing, for biomedical applications

L. E. Murr; Stella Quinones; Sara M. Gaytan; M.I. Lopez; A. Rodela; E. Martinez; D.H. Hernandez; F. Medina; Ryan B. Wicker


Materials Characterization | 2009

Microstructures and mechanical properties of electron beam-rapid manufactured Ti–6Al–4V biomedical prototypes compared to wrought Ti–6Al–4V

L. E. Murr; E. V. Esquivel; Stella Quinones; Sara M. Gaytan; M.I. Lopez; E. Martinez; F. Medina; D.H. Hernandez; J.L. Martinez; Stephen W. Stafford; D.K. Brown; T. Hoppe; W. Meyers; U. Lindhe; Ryan B. Wicker


Acta Materialia | 2010

Characterization of titanium aluminide alloy components fabricated by additive manufacturing using electron beam melting

L. E. Murr; Sara M. Gaytan; A. Ceylan; E. Martinez; J.L. Martinez; D.H. Hernandez; B.I. Machado; D. A. Ramirez; F. Medina; S. Collins; Ryan B. Wicker


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2010

Characterization of Ti–6Al–4V open cellular foams fabricated by additive manufacturing using electron beam melting

L. E. Murr; Sara M. Gaytan; F. Medina; E. Martinez; J.L. Martinez; D.H. Hernandez; B.I. Machado; D. A. Ramirez; Ryan B. Wicker


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2009

Microstructure evolution associated with adiabatic shear bands and shear band failure in ballistic plug formation in Ti-6Al-4V targets

L. E. Murr; A.C. Ramirez; Sara M. Gaytan; M.I. Lopez; E. Martinez; D.H. Hernandez


Acta Materialia | 2011

Novel precipitate-microstructural architecture developed in the fabrication of solid copper components by additive manufacturing using electron beam melting

D. A. Ramirez; L. E. Murr; E. Martinez; D.H. Hernandez; J.L. Martinez; B.I. Machado; F. Medina; P. Frigola; Ryan B. Wicker


Journal of Materials Processing Technology | 2011

Optimization of the shear strengths of ultrasonically consolidated Ti/Al 3003 dual-material structures

J.O. Obielodan; Brent Stucker; E. Martinez; J.L. Martinez; D.H. Hernandez; D. A. Ramirez; L. E. Murr


20th Annual International Solid Freeform Fabrication Symposium, SFF 2009 | 2009

Effect of build parameters and build geometries on residual microstructures and mechanical properties of Ti-6Al-4V components built by electron beam melting (EBM)

L. E. Murr; Sara M. Gaytan; F. Medina; E. Martinez; D.H. Hernandez; L. Martinez; M.I. Lopez; R. B. Wicker; S. Collins


TMS 2009 - 138th Annual Meeting and Exhibition | 2009

Structure-property-process optimization in the rapid-layer manufacturing of Ti-6A1-4V components by electron beam melting

Sara M. Gaytan; L. E. Murr; D.H. Hernandez; E. Martinez; S. A. Quinones; F. Medina; R. B. Wicker

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E. Martinez

University of Texas at El Paso

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F. Medina

University of Texas at El Paso

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Sara M. Gaytan

University of Texas at El Paso

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L. E. Murr

University of Texas at El Paso

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D. A. Ramirez

University of Texas at El Paso

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J.L. Martinez

University of Texas at El Paso

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M.I. Lopez

University of Texas at El Paso

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B.I. Machado

University of Texas at El Paso

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Ryan B. Wicker

University of Texas at El Paso

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Stella Quinones

University of Texas at El Paso

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