医用钛合金DLC层的性能。

Biomatter Pub Date : 2014-01-01 Epub Date: 2014-08-05 DOI:10.4161/biom.29505
Ludek Joska, Jaroslav Fojt, Ladislav Cvrcek, Vitezslav Brezina
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引用次数: 15

摘要

由于其优异的摩擦学性能、耐化学性和生物惰性特性,dlc型层在医学上具有良好的应用潜力。本研究验证了钛合金DLC层的可能性,制备了含三种钛浓度的涂层。钛主要以氧化物的形式存在于表面。其浓度的增加也导致碳化钛的存在增加。在生理盐水溶液中,所研究的系统的行为是稳定的。电化学阻抗谱几乎不随时间变化。然而,合金化在很大程度上改变了涂层系统的电化学行为:在非合金化DLC层的情况下,惰性表面只介导环境的交换反应,而在合金样品的情况下,响应相对于被动表面。DLC层与钛合金化的影响是通过与模拟体液的相互作用来测试的,在此过程中,与纯DLC相比,所有掺杂样品上都发生了含有钙和磷的化合物(骨磷灰石的基本成分)的沉淀。标本表面细胞定植试验结果证明,在钛元素含量中等和最高的标本中,钛具有积极作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Properties of titanium-alloyed DLC layers for medical applications.

Properties of titanium-alloyed DLC layers for medical applications.

Properties of titanium-alloyed DLC layers for medical applications.

Properties of titanium-alloyed DLC layers for medical applications.

DLC-type layers offer a good potential for application in medicine, due to their excellent tribological properties, chemical resistance, and bio-inert character. The presented study has verified the possibility of alloying DLC layers with titanium, with coatings containing three levels of titanium concentration prepared. Titanium was present on the surface mainly in the form of oxides. Its increasing concentration led to increased presence of titanium carbide as well. The behavior of the studied systems was stable during exposure in a physiological saline solution. Electrochemical impedance spectra practically did not change with time. Alloying, however, changed the electrochemical behavior of coated systems in a significant way: from inert surface mediating only exchange reactions of the environment in the case of unalloyed DLC layers to a response corresponding rather to a passive surface in the case of alloyed specimens. The effect of DLC layers alloying with titanium was tested by the interaction with a simulated body fluid, during which precipitation of a compound containing calcium and phosphorus--basic components of the bone apatite--occurred on all doped specimens, in contrast to pure DLC. The results of the specimens' surface colonization with cells test proved the positive effect of titanium in the case of specimens with a medium and highest content of this element.

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