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Multiscale Contact Mechanics of Ankle Joint Implant: Comparison of Two Implant Models

机译:踝关节植入物的多尺度接触力学:两种植入物模型的比较

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this paper compares two different types of ankle implants. The first is the cylinder-cylinder configuration in conformal contact and the second involves a cylinder-flat in contact. The interaction of implant rough surfaces including both elastic and plastic deformations is included in the contact model. The tibia and the talus surfaces are treated as macroscopically conforming cylinders in the first model and flat-cylinder in the second model, containing micron-scale roughness. The derived equations relate contact force on the implant and the minimum mean surface separation of the rough surfaces. Based on the distribution of asperity heights, the force is expressed using statistical integral function of asperity heights over possible region of interaction of the roughness of the tibia and the talus implant surfaces. Closed-form approximate equation relating contact force and minimum separation is used to obtain hysteretic energy loss per cycle in a load-unload sequence applied to the implant.
机译:本文比较了两种不同类型的脚踝植入物。第一种是共形接触的圆柱体-气缸构造,第二种是扁平接触的圆柱体。接触模型中包括植入物粗糙表面的相互作用,包括弹性变形和塑性变形。胫骨和距骨表面在第一个模型中被视为宏观一致的圆柱体,在第二个模型中被视为扁平圆柱体,包含微米级的粗糙度。推导的方程式将植入物上的接触力与粗糙表面的最小平均表面间距联系起来。根据粗糙高度的分布,使用胫骨粗糙度和距骨植入物表面相互作用的可能区域上的粗糙高度的统计积分函数表示力。使用接触力和最小间距相关的闭合形式近似方程式,可以得出施加到植入物上的加载/卸载序列中每个周期的磁滞能量损失。

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