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Characterization of dental metal-ceramic interfaces immersed in artificial saliva after substructural mechanical metallization with titanium

机译:钛亚结构机械金属化后浸入人工唾液中的牙科金属-陶瓷界面的特性

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The purpose of this study was to analyze the mechanical strength and microstructure of dental metal-ceramic interfaces immersed in acidic artificial saliva after mechanical metallization of a NiCr-based substrate. Commercial NiCrMo alloy and dental porcelain were characterized before the production of metal-ceramic specimens. Therefore, a group of metallic surfaces was mechanically metallized with Ti. After that, metal-ceramic interfaces were produced and immersed in an electrochemical cell containing artificial saliva. In order to accelerate the corrosion of the interfaces, a potential of 0.75. V was applied on the metallic substrate for 30. min. 3-point bending tests of the metal-ceramic systems were carried out according to the ISO-9693 standard before and after immersion tests. The metallic surfaces as well as the metal-ceramic interfaces were analyzed by SEM-EDS. There was a decrease of the mechanical strength of conventional metal-ceramic interface after immersion. However, the mechanical strength of the samples with metallized interfaces remained unaltered after immersion in artificial saliva.
机译:这项研究的目的是分析在NiCr基基材的机械金属化之后,浸入酸性人工唾液中的牙科金属-陶瓷界面的机械强度和微观结构。在生产金属陶瓷样品之前,先对商品化的NiCrMo合金和牙科瓷器进行了表征。因此,一组金属表面用Ti机械化了金属。之后,产生金属-陶瓷界面并将其浸入包含人造唾液的电化学电池中。为了加速界面的腐蚀,电位为0.75。将V施加在金属基底上30分钟。在浸入测试之前和之后,根据ISO-9693标准对金属陶瓷系统进行三点弯曲测试。通过SEM-EDS分析金属表面以及金属-陶瓷界面。浸入后常规金属-陶瓷界面的机械强度降低。但是,浸入人工唾液后,具有金属化界面的样品的机械强度保持不变。

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