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Fretting of Human Axial Cortical Bone

机译:人轴皮质骨微动

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摘要

Under imitating human physiological solution, the fretting behaviors of flat cortical bone specimen from fresh human femur in the axial orientation against TA2 titanium ball with diameter of 40 mm had been investigated. The coefficients of friction (COF) and fretting logs were calculated automatically. The worn surfaces of the cortical bone were analyzed by means of laser confocal scanning microscopy. The results showed that the fretting logs for the cortical bone varied with the increase of the cycles from the elastic partial slip (D=5 μm), the elastoplastic partial slip (D=15 μm) to gross slip (D=30 μm), respectively. The fretting regime transformed from the partial slip regime directly to the gross slip regime without the mixed fretting regime. And the evolution of the COF in each fretting condition was also compared statistically. The fretting damage in the elastic partial slip state was slight. But the abrasive wear and micro-fracture were observed in the plastoelastic partial slip state and gross slip regime. The wear depth increased with cycles and well related to the COF of the cortical bone in each fretting condition. To reduce the fretting damages of bone, it is advisable to control the displacement amplitude at bone-implant interface.
机译:在模拟人体生理溶液的条件下,研究了新鲜人股骨扁平皮质骨标本在轴向上对直径为40 mm的TA2钛球的微动行为。自动计算摩擦系数(COF)和微动记录。通过激光共聚焦扫描显微镜分析了皮质骨的磨损表面。结果表明,从弹性局部滑移(D = 5μm),弹塑性局部滑移(D = 15μm)到总滑移(D = 30μm),皮质骨的微动曲线随周期的增加而变化,分别。微动状态从部分滑移状态直接转换为总滑移状态,而没有混合微动状态。并在统计学上比较了每种微动条件下COF的变化。弹性部分滑动状态下的微动损伤很小。但是在塑性弹性局部滑移状态和大滑移状态下观察到了磨料磨损和微断裂。磨损深度随着周期的增加而增加,并且与每种微动条件下皮质骨的COF密切相关。为了减少骨骼的微动损伤,建议控制骨骼与植入物界面的位移幅度。

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