Chemo-mechanical effects on the tribocorrosion behavior of titanium/ceramic dental implant pairs in artificial saliva
Autor: | J. Navarro-Laboulais, A. Dalmau Borrás, A. Igual Muñoz, A. Roda Buch, A. Rovira Cardete |
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Rok vydání: | 2019 |
Předmět: |
Materials science
Tribocorrosion INGENIERIA MECANICA medicine.medical_treatment chemistry.chemical_element 02 engineering and technology INGENIERIA QUIMICA Metal passive film alloys 0203 mechanical engineering Materials Chemistry medicine Cubic zirconia Ceramic Composite material Dental implant Titanium mechanisms Surfaces and Interfaces 021001 nanoscience & nanotechnology Condensed Matter Physics Surfaces Coatings and Films Anode 020303 mechanical engineering & transports chemistry Mechanics of Materials visual_art visual_art.visual_art_medium Dental 0210 nano-technology human activities Tribometer |
Zdroj: | RiuNet. Repositorio Institucional de la Universitat Politécnica de Valéncia instname |
ISSN: | 0043-1648 |
DOI: | 10.1016/j.wear.2018.12.052 |
Popis: | [EN] In this paper, the degradation mechanisms of the ceramic and the metal in Titanium/Zirconia pairs for biomedical applications were analyzed. To do that, an experimental set-up with well-controlled mechanical and chemical conditions was used based on a unidirectional ball-on-disk tribometer coupled to a potentiostat. Tribocorrosion tests were carried out in artificial saliva at different applied potentials, this is, different chemical conditions of the surface. Wear damage of the titanium/zirconia pair was influenced by the properties and the behavior of wear debris in the contact. Under passive conditions metallic and oxidized titanium particles (formed by the cyclic removal of the passive film and subsequent repassivation) were smeared and mechanically mixed within the contact forming compacted wear debris through which the loading was carried out. Properties and amount of oxidized titanium lead to low wear at low passive conditions (OCP) and higher wear at high passive conditions. Zirconia did not suffer any damage under all the studied conditions and oxidized titanium was transferred to the ball at anodic applied potentials. Authors would like to acknowledge the Generalitat Valenciana for the financial support under the PROMETEO/2016/040 and GV/2017/042 projects. A. Dalmau acknowledges the Generalitat Valenciana for her contract (APOSTD/2017/051). |
Databáze: | OpenAIRE |
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