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Influence of the substitutional solute on the mechanical properties of Ti-Nb binary alloys for biomedical use

机译:替代溶质对生物医学用Ti-Nb二元合金力学性能的影响

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Titanium alloys are widely used in the manufacture of biomedical implants because they possess an excellent combination of physical properties and outstanding biocompatibility. Today, the most widely used alloy is Ti-6Al-4V, but some studies have reported adverse effects with the long-term presence of Al and V in the body, without mentioning that the elasticity modulus value of this alloy is far superior to the bone. Thus, there is a need to develop new Ti-based alloys without Al and V that have a lower modulus, greater biocompatibility, and similar mechanical strength. In this paper, we investigated the effect of Nb as a substitutional solute on the mechanical properties of Ti-Nb alloys, prepared in an arc-melting furnace and characterized by density, X-ray diffraction, optical microscopy, hardness and elasticity modulus measurements. The X-ray and microscopy measurements show a predominance of the α phase. The microhardness values showed a tendency to increase with the concentration of niobium in the alloy. Regarding the elasticity modulus, it was observed a nonlinear behavior with respect to the concentration of niobium. This behavior is associated with the presence of the α phase.
机译:钛合金具有优异的物理性能和出色的生物相容性,因此被广泛用于生物医学植入物的制造。如今,使用最广泛的合金是Ti-6Al-4V,但是一些研究报告说,体内长期存在Al和V会带来不利影响,而没有提及该合金的弹性模量值远远优于骨。因此,需要开发新的不含Al和V的Ti基合金,其具有较低的模量,更大的生物相容性和相似的机械强度。在本文中,我们研究了Nb作为替代溶质对在电弧炉中制备的Ti-Nb合金力学性能的影响,并通过密度,X射线衍射,光学显微镜,硬度和弹性模量测量进行了表征。 X射线和显微镜测量显示出α相占优势。显微硬度值显示出随合金中铌浓度增加的趋势。关于弹性模量,观察到关于铌浓度的非线性行为。该行为与α相的存在有关。

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