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Repassivation of commercially pure Ti in different saliva solutions under tribocorrosion conditions

机译:摩擦腐蚀条件下不同唾液中商业纯钛的再钝化

摘要

The surface of dental implants can undergo wear during insertion and implantation into hard tissue, or, in some conditions, during its lifetime. As a consequence, the passive film presented at the implant surface can be damaged or even totally destroyed. However, if the wear action stops the surface might regenerate, giving origin to a new passive film. As all the process occurs in the presence of a chemical aggressive environment, human saliva, the material is under tribocorrosion conditions. It is also possible to introduce the concept of tribo-electrochemistry which may include two main research areas: the tribocorrosion, where the mechanical solicitations in corrosive environments are studied, and the electrochemistry of film free surfaces, where repassivation kinetics is studied after the removal of the protective oxide film on a passive metal. The main aim of this work was to study the repassivation evolution of commercially pure Ti in artificial saliva solutions. Grade 2 commercial pure titanium samples were subjected to a small alternative sliding in a pin-on-plate tribometer against a corundum ball. At the same time, open-circuit potential (OCP) measurements were performed, before, during and after mechanical disruption of the passive film. Also, to obtain a more detailed information on the characteristics of the original and reformed passive film, EIS measurements were done before and after the mechanical damage. All the test were performed in different kinds of artificial saliva solutions (artificial saliva (AS), AS + citric acid, AS + anodic, cathodic or organic inhibitor). Additionally, the effect of pH and electrolyte composition on the repassivation evolution was also investigated. Finally, all samples were characterized using SEM, EDS, and AFM. Surface roughness was also evaluated. Results show that, in some solutions, the open circuit potential, after repassivation, is more noble than that measured before sliding. Also, the repassivation evolution appears to be strongly affected by the electrolyte nature. The AS + citric acid is the solution that provides a better repassivation evolution with the time, however the stability of the passive film takes some time to be acquired. Also, this solution does not provide a very thick film.
机译:牙科植入物的表面在插入和植入硬组织过程中或在某些情况下,可能在其使用寿命期间发生磨损。结果,存在于植入物表面的无源膜可能被损坏甚至被完全破坏。但是,如果磨损作用停止,则表面可能会再生,从而产生了新的钝化膜。由于所有过程都是在化学侵蚀性环境,人类唾液的存在下发生的,因此该材料处于摩擦腐蚀条件下。也有可能引入摩擦电化学的概念,它可能包括两个主要的研究领域:摩擦腐蚀,研究腐蚀性环境下的机械腐蚀;以及无膜表面的电化学,研究去除铬后的钝化动力学。钝化金属上的保护性氧化膜。这项工作的主要目的是研究商业纯钛在人工唾液中的再钝化演变。将商品2级纯钛样品在销钉板式摩擦计中对刚玉球进行较小的滑动。同时,在钝化膜的机械破坏之前,之中和之后进行开路电势(OCP)测量。另外,为了获得有关原始和经过改造的钝化膜特性的更详细的信息,在机械损坏之前和之后都要进行EIS测量。所有测试均在不同种类的人工唾液溶液中进行(人工唾液(AS),AS +柠檬酸,AS +阳极,阴极或有机抑制剂)。另外,还研究了pH和电解质组成对再钝化演变的影响。最后,所有样品均使用SEM,EDS和AFM进行表征。还评估了表面粗糙度。结果表明,在某些解决方案中,重新钝化后的开路电位比滑动前测得的高。同样,再钝化的发展似乎受到电解质性质的强烈影响。随着时间的流逝,AS +柠檬酸可以提供更好的再钝化发展,但是钝化膜的稳定性需要一些时间才能获得。而且,该解决方案不能提供非常厚的膜。

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