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Fretting behavior of NiTi shape memory alloy against long bone in the imitated human physiological solution

机译:NiTi形状记忆合金在仿制人体生理溶液中对长骨的微动行为

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The environment of orthopaedic implants sometimes induces vibrations at the contact of the modular prostheses components. In this paper the fretting behavior of NiTi SMAs against human bones in the imitated human physiological solution was studied at various displacement amplitudes and Ph value. Surface micrograph after fretting was observed by MEF3 microscope. Appearance of fretting scar was measured by 2206 roughness tester. The result shows that the friction coefficient between the bone and NiTi SMAs pairs declined due to the lubrication effect of Hank's solution, and which increased when Ph value of fluid was not 7.2 due to the corrosion. So the friction coefficient at acid and alkali Hank's solution is higher than those at the neutral solution and ambient air condition. Generally speaking, the friction coefficient between the bone and NiTi SMAs tend to be stable with the increasing amplitude at all test conditions. It is because that the surface was oxidized to restrain the forming of wear debris and the further development of fretting scars. Although the length and width of the wear scars in simulation body fluid are smaller than that at ambient air condition, the surface of NiTi SMAs damaged is characterized by deep scratches with debris particles within the contact area. Fretting regime of NiTi/bones pairs exhibits the mixed regime at ambient air condition and the slip regime in the Hank's solution.
机译:整形外科植入物的环境有时会在模块化假体组件的接触处引起振动。本文研究了NiTi SMAs在模拟的人体生理溶液中对人体骨骼的微动行为,研究了不同的位移幅度和Ph值。用MEF3显微镜观察微动后的表面显微照片。用2206粗糙度测试仪测量微动疤痕的外观。结果表明,由于Hank溶液的润滑作用,骨骼与NiTi SMAs对之间的摩擦系数下降,而当流体的Ph值不为7.2时,由于腐蚀,摩擦系数增加。因此,在酸性和碱性汉克溶液下的摩擦系数高于在中性溶液和环境空气条件下的摩擦系数。一般而言,在所有测试条件下,随着振幅的增加,骨头与NiTi SMA之间的摩擦系数趋于稳定。这是因为表面被氧化以抑制磨损碎屑的形成和微动疤痕的进一步发展。尽管模拟体液中的磨损痕迹的长度和宽度比环境空气条件下的磨损痕迹的长度和宽度小,但损坏的NiTi SMA表面的特征是在接触区域内有深深的划痕和碎屑颗粒。 NiTi /骨骼对的微动态在环境空气条件下表现出混合态,而在汉克溶液中表现出滑移态。

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