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Advanced 3Y-TZP bioceramic doped with Al 2O 3 and MnO 2 particles potentially for biomedical applications: study on mechanical and degradation properties

机译:掺有Al 2 O 3 和MnO 2 可能用于生物医学应用的颗粒:力学性能和降解性能的研究

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The effectiveness of Al2O3and MnO2in enhancing mechanical properties and retarding degradation of 3mol% yttria stabilized tetragonal zirconia polycrystalline (3Y-TZP) ceramic samples was evaluated by pressureless sintering at temperatures ranging from 1250°C to 1550°C with standard holding time of 2h. It was observed that the inclusion of Al2O3and MnO2into 3Y-TZP was beneficial for the improvement of mechanical properties and ageing resistance. The optimum amounts of dopants were determined to be of 0.6wt% Al2O3and 0.4wt% MnO2. Microstructural investigation revealed that at the same temperature, the tetragonal grain size was not influenced by the increase of dopant levels. With optimum dopants the 3Y-TZP ceramic (density 6.1g/cm3) samples demonstrated the Vickers hardness of 11.6GPa, fracture toughness,KICof 9.8MPam1/2, flexural strength of 900MPa and Young's modulus of 210GPa. Furthermore, the efficacy of the dopants (MnO2and Al2O3) in retarding low-temperature degradation of 3Y-TZP ceramic during exposure in Ringer's solution at 37°C was also evaluated. Overall, the degradation rate and weight loss of 0.6wt% Al2O3and 0.4wt% MnO2ceramic samples were 0.66% in 8 weeks as compared to the undoped samples. The 3Y-TZP bioceramic doped with Al2O3and MnO2could be a potential candidate material for biomedical applications (e.g. hip implants) due to its improved mechanical properties and superior ageing resistance.
机译:通过在1250°C至1550°C的温度范围内以2h的标准保持时间进行无压烧结,评估了Al2O3和MnO2在增强3mol%氧化钇稳定的四方氧化锆多晶(3Y-TZP)陶瓷样品的机械性能和延迟降解方面的有效性。观察到在3Y-TZP中包含Al2O3和MnO2有助于改善机械性能和耐老化性。确定最佳掺杂量为0.6重量%的Al 2 O 3和0.4重量%的MnO 2。显微组织研究表明,在相同温度下,四方晶尺寸不受掺杂剂含量增加的影响。使用最佳掺杂剂,3Y-TZP陶瓷(密度6.1g / cm3)样品的维氏硬度为11.6GPa,断裂韧性,KIC为9.8MPam1 / 2,抗弯强度为900MPa,杨氏模量为210GPa。此外,还评估了掺杂剂(MnO2和Al2O3)在37℃下在林格氏溶液中曝光过程中延迟3Y-TZP陶瓷低温降解的功效。总体而言,与未掺杂样品相比,0.6wt%Al2O3和0.4wt%MnO2陶瓷样品在8周内的降解率和失重为0.66%。掺杂有Al2O3和MnO2的3Y-TZP生物陶瓷由于其改善的机械性能和优异的耐老化性,可能成为生物医学应用(例如髋关节植入物)的潜在候选材料。

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