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Ageing Shocks and Wear Mechanisms in ZTA and the Long-Term Performance of Hip Joint Materials

机译:ZTA的老化冲击和磨损机理以及髋关节材料的长期性能

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摘要

The surface morphologies and microstructures of Zirconia Toughened Alumina (ZTA) femoral heads were analyzed following in vitro tests aiming to simulate in vivo degradation. Three phenomena potentially leading to degradation were investigated: shocks, friction and hydrothermal ageing. Shocks due to micro-separation created the main damage with the formation of wear stripes on the femoral head surfaces. Atomic Force Microscopy (AFM) images suggested the release of wear debris of various shapes and sizes through inter- and intra-granular cracks; some debris may have a size lower than 100 nm. A decrease in hardness and Young’s modulus was measured within the wear stripes by nanoindentation technique and was attributed to the presence of surface and sub-surface micro-cracks. Such micro-cracks mechanically triggered the zirconia phase transformation in those worn areas, which in return presumably reduced further crack propagation. In comparison with shocks, friction caused little wear degradation as observed from AFM images by scarce pullout of grains. The long-term resistance of the ZTA composite material against hydrothermal ageing is confirmed by the present observations.
机译:旨在模拟体内降解的体外测试之后,对氧化锆增韧氧化铝(ZTA)股骨头的表面形态和微观结构进行了分析。研究了可能导致退化的三种现象:冲击,摩擦和热液老化。由于微分离而产生的冲击会在股骨头表面形成磨损条纹,从而造成主要损害。原子力显微镜(AFM)图像表明,颗粒间和颗粒内的裂纹释放出各种形状和大小的磨损碎片。一些碎片的尺寸可能小于100 nm。通过纳米压痕技术测量了磨损条纹内硬度和杨氏模量的下降,这归因于表面和亚表面微裂纹的存在。这种微裂纹在那些磨损的区域内机械地触发了氧化锆相变,从而可以减少裂纹的进一步传播。与冲击相比,从AFM图像中观察到,由于晶粒的稀缺,摩擦导致的磨损几乎没有降低。本观察结果证实了ZTA复合材料对水热老化的长期抵抗力。

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