会议论文详细信息
3rd International Conference on Competitive Materials and Technology Processes
Electrochemical behavior of 45S5 bioactive ceramic coating on Ti6Al4V alloy for dental applications
Machado López, M.M.^1 ; Espitia Cabrera, M.I.^2 ; Faure, J.^3 ; Contreras García, M.E.^1
Institute de Investigaciones Metalúrgicas, UMSNH, C.U. Edificio U, Michoacán, Morelia, Mexico^1
Facultad de Ingeniería Química, UMSNH, C.U. Edificio E, Michoacán, Morelia, Mexico^2
INSERM UMRS-926, Laboratoire de Microscopie Electronique Analytique, 21 rue Clement, 51685 Reims Cedex, France^3
关键词: Bioactive material;    Clinical conditions;    Dental applications;    Electrochemical behaviors;    Implant materials;    Mechanical anchorage;    Proportional relationships;    Tafel extrapolations;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/123/1/012006/pdf
DOI  :  10.1088/1757-899X/123/1/012006
来源: IOP
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【 摘 要 】

Titanium and its alloys are widely used as implant materials because of their mechanical properties and non-toxic behavior. Unfortunately, they are not bioinert, which means that they can release ions and can only fix the bone by mechanical anchorage, this can lead to the encapsulation of dense fibrous tissue in the body. The bone fixation is required in clinical conditions treated by orthopedic and dental medicine. The proposal is to coat metallic implants with bioactive materials to establish good interfacial bonds between the metal substrate and bone by increasing bioactivity. Bioactive glasses, ceramics specifically 45 S5 Bioglass, have drawn attention as a serious functional biomaterial because osseointegration capacity. The EPD method of bioglass gel precursor was proposed in the present work as a new method to obtain 45S5/Ti6A14V for dental applications. The coatings, were thermally treated at 700 and 800°C and presented the 45 S5 bioglass characteristic phases showing morphology and uniformity with no defects, quantification percentages by EDS of Si, Ca, Na, P and O elements in the coating scratched powders, showed a good proportional relationship demonstrating the obtention of the 45S5 bioglass. The corrosion tests were carried out in Hank's solution. By Tafel extrapolation, Ti6Al4V alloy showed good corrosion resistance in Hank's solution media, by the formation of a passivation layer on the metal surface, however, in the system 45S5/Ti6Al4V there was an increase in the corrosion resistance; icon-, Ecorrand corrosion rate decreased, the mass loss and the rate of release of ions, were lower in this system than in the titanium alloy without coating.

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