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The effect of microstructure and chromia content on the properties of zirconia toughened alumina

机译:微观结构和氧化铬含量对氧化锆增韧氧化铝性能的影响

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摘要

Variants of zirconia toughened alumina with a composition comparable to a commercial material were produced as to assess the effect on hardness, fracture toughness, Young's modulus, and scratch resistance. Chromia content was adjusted above and below the reference material. Separately, sintering conditions were varied to create grain size and density variations. It is shown that the chromia content within the composition range studied does not impact the mechanical properties but only the color of the final product. Hardness can be increased via sintering variations that impact grain size and density, however, at the potential cost of fracture toughness. From scratch test results, it is anticipated that fracture toughness is the dominating material property for robust performance of the material when used as joint bearing implant components under adverse wear conditions. The high relative hardness of alumina based ceramics is one of the advantages when compared to alternative non ceramic joint bearing implant components, however, the fine tuning of the ZTA hardness via sintering variations herein does not create improved performance of the joint bearing implant component.
机译:氧化锆增韧氧化铝的变体具有与商业材料相当的组成,以评估硬度,断裂韧性,杨氏模量和耐刮擦性的影响。染色体含量在参考材料上方和下方调整。单独地,各种烧结条件以产生粒度和密度变化。结果表明,研究的组成范围内的染色含量不会影响机械性能,而是仅影响最终产品的颜色。然而,可以通过烧结变化来增加硬度,然而,抗冲击颗粒尺寸和密度以断裂韧性的潜在成本。从划痕试验结果来看,预计骨折韧性是当在不良磨损条件下用作关节轴承植入部件时,骨折韧性是稳健性能的稳健性能。与替代的非陶瓷关节轴承植入部件相比,氧化铝基陶瓷的高相对硬度是当替代的非陶瓷关节轴承植入部件相比的优点之一,本文通过烧结变化的ZTA硬度的微调不会产生接头轴承植入部件的改进性能。

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