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HAp 和 β-TCP 掺入对用于植入物部件的 Ti6Al4V 生物复合材料摩擦学响应的影响。

Effect of HAp and β-TCP incorporation on the tribological response of Ti6Al4V biocomposites for implant parts.

机构信息

Center for Microelectromechanical Systems (CMEMS-UMinho), University of Minho, Guimarães, Portugal.

Department of Mechanical Engineering, University of Minho, Guimarães, Portugal.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Apr;106(3):1010-1016. doi: 10.1002/jbm.b.33908. Epub 2017 May 8.

Abstract

Titanium and its alloys have been widely used in many engineering areas due to their properties. Despite having a high implant-tissue osseointegration time, Ti6Al4V has been extensively used in prosthesis and articular implants. To promote a faster bone ingrowth and consequently reduce the implant fixation time, the addition of a bioactive phase to form a biocomposite seems to be an excellent solution. Because of their bioactivity and similarity in composition with the human bone, HAp and β-TCP are two of the most widely used calcium phosphates in biomedical applications. To guarantee a strong adhesion of the previous bioactive materials in the implants surface, samples of Ti6Al4V, Ti6Al4V+HAp (10 vol %) and Ti6Al4V+β-TCP (10 vol %) TCP were processed by the hot pressing technique. Tribological tests against Al O lubricated in PBS at 37°C were carried out on a ball-on-flat reciprocating sliding geometry. Loads in the range of 3 N to 30 N were applied and their effect on the friction behavior and wear resistance of the tested materials was evaluated. Values of the coefficient of friction as well as the wear rate tend to increase with the addition of a bioactive phase to the Ti alloy. Micrographs of the worn surfaces showed that abrasion and plastic deformation are the prevailing wear mechanisms in the studied tribosystems. For biocomposites, particularly in the case of Ti6Al4V+HAp, pull-out of bioactive particle clusters has a determinant role on the tribological response, increasing both the friction coefficient and the specific wear rate. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1010-1016, 2018.

摘要

钛及其合金由于其性能而被广泛应用于许多工程领域。尽管 Ti6Al4V 的植入物-组织骨整合时间较长,但它已被广泛应用于假体和关节植入物。为了促进更快的骨长入,并因此缩短植入物固定时间,向其中添加生物活性相以形成生物复合材料似乎是一个极好的解决方案。由于其生物活性以及与人体骨骼的成分相似,HAp 和 β-TCP 是生物医学应用中最广泛使用的两种钙磷酸盐。为了保证先前的生物活性材料在植入物表面具有较强的粘附力,采用热压技术对 Ti6Al4V、Ti6Al4V+HAp(10vol%)和 Ti6Al4V+β-TCP(10vol%)TCP 进行了处理。在 37°C 的 PBS 中用 Al2O3 润滑,在球-盘往复滑动几何形状上进行了摩擦学测试。施加了 3N 至 30N 的载荷,并评估了它们对测试材料的摩擦行为和耐磨性的影响。摩擦系数和磨损率的值都随着向钛合金中添加生物活性相而增加。磨损表面的微观照片表明,在研究的摩擦系统中,磨损机制主要是磨料磨损和塑性变形。对于生物复合材料,特别是在 Ti6Al4V+HAp 的情况下,生物活性颗粒簇的拔出对摩擦学响应具有决定性作用,既增加了摩擦系数又增加了比磨损率。 © 2017 年威利父子公司。J 生物医学材料研究杂志 B:应用生物材料,106B:1010-1016,2018 年。

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