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Characterization of Ti and Ti6Al4V Surfaces After Mechanical and Chemical Treatments: A Rational Approach to the Design of Biomedical Devices

机译:机械和化学处理后对Ti和Ti6Al4V表面的表征:设计生物医学装置的一种合理方法

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At present, titanium-based biomaterials for the production of prosthetic devices have achieved a satisfactory quality level; current research aims at improving their surgical dependability and biomechanical performances. In this contest, a crucial aspect is represented by the osseointegration process, which implies the secure association of endosseous devices with the surrounding biological tissue. Osseointegration is largely controlled by surface characteristics with regard to both chemical composition and morphological properties. Therefore, the design of such devices might be guided by the characterization of surface morphology produced by mechanical and chemical treatments. This paper illustrates the results obtained by the application of a set of treatments on titanium (Ti2) and Ti6Al4V alloy (Ti5) samples. Mechanical treatments mainly affect the dimension of larger defects, acting on a macrometric scale and inducing specific patterns; chemical treatments (i.e., acid attack at room or higher temperature) can dissolve surface material altering defect dimensions on a micrometric scale. This study may represent a useful tool for the rational design of implant surface characteristics.
机译:目前,用于制造假体的钛基生物材料已经达到了令人满意的质量水平。当前的研究旨在改善其手术可靠性和生物力学性能。在本次竞赛中,骨整合过程代表了一个至关重要的方面,这暗示了骨内装置与周围生物组织的安全结合。骨整合在很大程度上由化学组成和形态特性方面的表面特征控制。因此,此类设备的设计可能以机械和化学处理产生的表面形态特征为指导。本文说明了通过对钛(Ti2)和Ti6Al4V合金(Ti5)样品进行一系列处理而获得的结果。机械处理主要影响较大缺陷的尺寸,在宏观尺度上起作用并产生特定的图案。化学处理(例如,室温或更高温度下的酸侵蚀)可以溶解表面材料,从而在微米尺度上改变缺陷尺寸。这项研究可能是合理设计植入物表面特征的有用工具。

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