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Ti-Based Biomaterials: Synthesis, Properties and Applications

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

Powder Bed Fusion; Titanium alloys; Cobalt–Chrome alloys; anisotropy; bcc Ti-Mo-Zr alloys; Inter-diffusion coefficient; Impurity coefficient; Atomic mobility; CALPHAD modeling; titanium; low frequency; inductive transmission; metallic housing; hermetic sealing; longevity; FEM model; active implantable medical devices; stainless; nitinol; diaphyseal fracture; implant; osseointegration; biocompatibility; bioactive ceramic coatings; sphene; ECAP; Conform; continuous extrusion; wire; medical implants; plasma spraying; Ti coating; polymers; biomaterials; heat treatment; in situ alloying; laser additive manufacturing; mechanical properties; microstructure; Ti–Nb alloy; Ni-Ti alloy; surface characteristics; hydrophobic; magnetic mixed EDM; TiO2 nanotubes; crystallization; gaseous plasma; biological response; mechanical alloying; nanoprecursor; electric pulse-assisted sintering; metal matrix composites; titanium plate; amine plasma; surface modification; hydrophilicity; new bone formation; titanium-based foams; thermal dealloying; titanium alloy; biomaterial; TiMoZrTa; TiMoSi; low elasticity modulus; corrosion; titanium alloys; microstructures; TNTZ; copper; Ti2Cu; Ti3Cu; antibacterial; shape memory alloy; temperature variable micro-compression test; single crystal; biomedical alloy; selective electron beam additive manufacture; Ti6Al4V ELI alloy; phase transformation; spatial; gradient energy density; martensitic decomposition; Ti3Al intermetallic compound; fracture analysis; biofunctionalization

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03928-988-2

País de edición

Suiza