首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Influence of pH on the tribocorrosion behavior of CpTi in the oral environment: synergistic interactions of wear and corrosion.
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Influence of pH on the tribocorrosion behavior of CpTi in the oral environment: synergistic interactions of wear and corrosion.

机译:pH对CpTi在口腔环境中的摩擦腐蚀行为的影响:磨损与腐蚀的协同相互作用。

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Dental implants made of titanium alloys have been used as a predictable therapy approach to replace missing teeth. The oral environment subjects titanium implants to varying conditions like changes in pH, temperature, and saliva contamination leading to chemical corrosion together with mastication process. Objective: In this study, the combined effect of chemical corrosion and wear (so-called tribocorrosion) in the degradation of dental implant material (CpTi) under varying pH oral environment was investigated. Methods: Titanium (CpTi) discs were subjected to sliding tests in artificial saliva at varying pHs: 3.0, 6.0, and 9.0. A custom made tribocorrosion apparatus was used to perform the tests. The tribological system consisted of a ceramic ball of 28 mm diameter articulating against the flat face (titanium). Results: Electrochemical impedance spectroscopy results indicated an increase in electrochemical double layer capacitance (C(dl) ) at pH 3.0 and 6.0 after sliding. Surprisingly, in the presence of tribological stresses, the measured current evolution was highest and fluctuated the most at pH 6.0. In addition, the greatest weight loss was measured at pH 6.0. Conclusions: Despite reports of CpTi being electrochemically stable down to pH 2.0, this study suggests degradation peaks at near neutral pH values in the presence of motion. At pH 6.0, the passive film layer, typically protecting the surface of titanium may not be reformed cohesively, resulting in more tribocorrosion products at the surface, which are easily sheared off. These findings elevate concern with regard to dental implants because the average pH of the oral cavity is 6.3. ? 2012 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 100B: 1662-1671, 2012.
机译:由钛合金制成的牙科植入物已被用作可替代牙齿缺失的可预测治疗方法。口腔环境会使钛植入物经受各种条件的影响,例如pH值,温度的变化和唾液污染,从而导致化学腐蚀以及咀嚼过程。目的:在这项研究中,研究了化学腐蚀和磨损(所谓的摩擦腐蚀)在不同pH值口腔环境下对牙种植体材料(CpTi)降解的综合影响。方法:钛(CpTi)圆盘在不同pH:3.0、6.0和9.0的人造唾液中进行滑动测试。使用定制的摩擦腐蚀设备进行测试。摩擦系统由直径为28 mm的陶瓷球铰接在平面(钛)上组成。结果:电化学阻抗谱结果表明滑动后在pH 3.0和6.0下电化学双层电容(C(dl))增加。出乎意料的是,在存在摩擦应力的情况下,测得的电流演化最高,并且在pH 6.0时波动最大。另外,在pH 6.0下测得最大的重量损失。结论:尽管有报道称CpTi在pH值低至2.0时仍具有电化学稳定性,但这项研究表明在存在运动的情况下,降解峰在中性pH值附近。在pH 6.0时,通常保护钛表面的钝化膜层可能无法内聚地重整,从而导致表面上出现更多的摩擦腐蚀产物,这些产物容易被剪切掉。这些发现引起了对牙科植入物的关注,因为口腔的平均pH为6.3。 ? 2012 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater 100B:1662-1671,2012。

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