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A comparative study on the fretting behaviors of human femur compact bone under tangential and radial fretting models in vitro

机译:在体外切向和径向微动模型下人股骨紧凑型骨折的比较研究

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Testes of two fretting modes (i.e. tangential and radial fretting) of human human femur cortical bone against TA2 ball in vitro have been carried out under the varied imposed normal loads. Much severer surface damage occurred at high displacement amplitudes under the testing of tangential fretting than that of radial fretting. Ploughs and detachment of particles were observed in the wear scars of tangential fretting specimens. Combination of abrasive wear and delamination was the mechanism of tangential fretting of cortical bone. The results under radial fretting condition show that circumferential lamella of osteon presented a better resistance than that of interstitial lamella. Micro-cracks and delamination occurred primarily at the edge of contact zone. It was found that Haversian system of cortical bone played an important role under the two fretting modes. Tthe liquid exudant come from the degradation of bone was played an important role as a lubricant.
机译:在多种施加的正常载荷下,在体外进行两种凹陷模式(即切向和径向微量的辐射和径向烦恼)对TA2球的抗TA2球。在对切向微动的测试之下,在高位移幅度下发生了更严重的表面损坏而不是径向微动画。在切向微量标本的磨损疤痕中观察到颗粒的犁和脱落。磨料磨损和分层的组合是皮质骨切向肌肉的机制。径向微动条件下的结果表明,骨孔的周向薄片呈现出比间质薄片的更好的抵抗力。微裂纹和分层主要发生在接触区的边缘。发现皮质骨的Haversian系统在两种微动模式下发挥了重要作用。液体出汗来自骨的降解作为润滑剂发挥了重要作用。

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