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Influence of fluoride content and pH on corrosion and tribocorrosion behaviour of Ti13Nb13Zr alloy in oral environment

机译:氟含量和pH值对口腔环境下Ti13Nb13Zr合金腐蚀和摩擦腐蚀行为的影响

摘要

© 2015 Elsevier Ltd. CpTi and Ti6Al4V alloy are the most widely used materials for implant application, but the release of toxic elements (. e.g. Al and V) and the so-called stress-shielding effect are still a concern. In recent years, β and near-. β titanium alloys have been developed, which overcome these issues with reduced modulus of elasticity and biocompatible alloying elements. However, literature is scarce studying the tribocorrosion behaviour of these alloys for dental implantology. The present work studies the tribocorrosion behaviour of the near-. β Ti13Nb13Zr alloy in oral environment, using CpTi4 for comparison purposes. To that end, the influence of the pH and fluoride concentration in artificial saliva was analysed. Reciprocating sliding corrosion tests were carried out under open circuit potential and potentiostatic conditions. Results reveal a negative influence of the increase of fluoride concentration and the acidified artificial saliva on the material degradation. Moreover, some light has been shed on the different tribocorrosion mechanisms of Ti13Nb13Zr and CpTi4 in simulated oral environment.
机译:©2015 Elsevier Ltd. CpTi和Ti6Al4V合金是植入材料中使用最广泛的材料,但是有毒元素(例如Al和V)的释放以及所谓的应力屏蔽效果仍然令人担忧。近年来,β与近。已经开发出β钛合金,它以降低的弹性模量和生物相容性合金元素克服了这些问题。但是,很少有文献研究这些合金在种植牙方面的摩擦腐蚀行为。目前的工作研究附近的摩擦腐蚀行为。 βTi13Nb13Zr合金在口腔环境中,使用CpTi4进行比较。为此,分析了pH和氟化物浓度对人工唾液的影响。在开路电势和恒电位条件下进行往复滑动腐蚀试验。结果表明,氟化物浓度的增加和酸化的人工唾液对材料降解的负面影响。此外,在模拟口腔环境中,Ti13Nb13Zr和CpTi4的不同摩擦腐蚀机理也有了一些启示。

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