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Corrosion of nickel-based dental casting alloys

机译:镍基牙科铸造合金的腐蚀

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Objectives. To study the microstructure, corrosion behaviour and cell culture response of two nickel-based dental casting alloys before and after a heat treatment to simulate porcelain firing. Methods. The microstructure was studied using scanning electron microscopy (SEM) and energy dispersive X-ray analysis (EDX). Corrosion behaviour was evaluated by electrochemical measurements in artificial saliva at different values of pH in the presence of a crevice. 3T3 mouse fibroblasts were exposed indirectly to alloy specimens and the number of viable cells counted after 3 and 6 days compared to a control culture. Results. Small changes in microstructure were observed after heat treatment but had a negligible effect on the corrosion properties in the conditions tested. The alloy with a lower bulk level of Cr (12.6 wt.%) showed lower corrosion resistance, indicated by an increased passive current density and this stability was greatly reduced at pH 2.5, where crevice corrosion was observed. Selective dissolution occurred at regions within the microstructure containing lower levels of Cr and Mo. Furthermore, the proliferation of 3T3 mouse fibroblasts was reduced (p < 0.05) when exposed indirectly to this alloy. The alloy containing a higher level of Cr (25 wt.%) showed superior corrosion resistance, which was associated with a more uniform distribution of Cr in the alloy microstructure. Significance. The presence of crevices combined with an inhomogeneous distribution of Cr in the microstructure can lead to accelerated corrosion of Ni-based alloys with lower Cr contents. This effect can be avoided by increasing the Cr content of the alloy.
机译:目标。研究两种镍基牙科铸造合金在模拟瓷烧之前和之后的微观结构,腐蚀行为和细胞培养响应。方法。使用扫描电子显微镜(SEM)和能量色散X射线分析(EDX)研究了微观结构。在存在缝隙的情况下,通过在不同pH值下的人工唾液中进行电化学测量来评估腐蚀行为。将3T3小鼠成纤维细胞间接暴露于合金样品中,与对照培养相比,第3天和第6天后对存活细胞的数量进行计数。结果。热处理后观察到微观结构的微小变化,但在测试条件下对腐蚀性能的影响可忽略不计。 Cr含量较低的合金(12.6 wt。%)显示出较低的耐腐蚀性,这表明无源电流密度增加,并且在pH 2.5时(观察到缝隙腐蚀)该稳定性大大降低。选择性溶解发生在含有较低水平的Cr和Mo的微结构区域。此外,当3T3小鼠成纤维细胞间接暴露于该合金时,其增殖减少(p <0.05)。含有较高含量的Cr(25 wt。%)的合金显示出优异的耐腐蚀性,这与Cr在合金显微组织中的分布更均匀有关。意义。裂纹的存在与微观结构中Cr的不均匀分布相结合会导致Cr含量较低的Ni基合金的加速腐蚀。通过增加合金中的Cr含量可以避免这种效果。

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