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首页> 外文期刊>Journal of biomedical materials research, Part A >Corrosion Resistance of Titanium-Silver Alloys in an Artificial Saliva Containing Fluoride Ions
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Corrosion Resistance of Titanium-Silver Alloys in an Artificial Saliva Containing Fluoride Ions

机译:含氟离子人工唾液中钛银合金的耐蚀性

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摘要

Dental gels and rinses for caries prophylactic contain fluoride at concentrations ranging from 0.1 to 1 percent. In addition, many types of fluoride-releasing materials have been used in dental applications. The purpose of the study was to investigate the addition effect of fluoride into artificial saliva on the corrosion resistance of pure titanium and titanium-silver alloys. Titanium and titanium-silver alloys were arc melted, homogenized at 950 deg C for 72 h, hot rolled, and solution heat treated and quenched. In order to investigate the effect of the fluoride ions on the corrosion resistance, potentiodynamic polarization testing, potentiostatic testing, and open-circuit potential measurements were performed in plain artificial saliva and 0.1 and 1 percent NaF-added artificial saliva. The passive current densities of titanium and titanium-silver alloys increased with increasing fluoride-ion concentration. Ti2.0Ag and Ti3.0Ag exhibited a low current density relatively and showed a stable behavior compared to titanium. The open-circuit potential of titanium decreased and current density at 250 mV (SCE) potentiostatic testing reacted sensitively with increasing fluoride concentration. On the other hand, the open-circuit potential of titanium-silver alloys with a high silver content (3.0-4.0 at percent) reacted less sensitively to the fluoride-ion concentration. Among titanium-silver alloys, Ti3.0Ag alloy had a higher resistance against the attack of fluoride ions and showed a more stable open-circuit potential and current density than titanium in the fluoride-containing solution. It is concluded that they are electrochemically stable and maintained good corrosion resistance in fluoride-containing artificial saliva.
机译:预防龋齿的牙科凝胶和冲洗液中氟化物的浓度范围为0.1%至1%。另外,在牙科应用中已经使用了许多类型的释放氟化物的材料。该研究的目的是研究氟化物在人造唾液中的添加对纯钛和钛银合金耐腐蚀性的影响。将钛和钛-银合金电弧熔化,在950℃下均化72小时,热轧,固溶热处理和淬火。为了研究氟离子对耐腐蚀性的影响,在普通人造唾液和添加0.1%和1%NaF的人造唾液中进行了电位动力学极化测试,恒电位测试和开路电势测量。钛和钛银合金的无源电流密度随着氟离子浓度的增加而增加。与钛相比,Ti2.0Ag和Ti3.0Ag的电流密度相对较低,并且表现出稳定的性能。钛的开路电势降低,并且在250 mV(SCE)的恒电位测试中,电流密度随着氟化物浓度的增加而灵敏地反应。另一方面,具有高银含量(3.0-4.0at%)的钛-银合金的开路电势对氟离子浓度反应较不敏感。在钛-银合金中,Ti3.0Ag合金比含氟溶液中的钛具有更高的抵抗氟离子侵蚀的能力,并且显示出比钛更稳定的开路电势和电流密度。结论是,它们在含氟人造唾液中电化学稳定并保持良好的耐腐蚀性。

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