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The investigation of Energy Loss in Conformal Contact Mechanics of Carpal - Radial Components in Wrist Arthroplasty

机译:腕部关节成形术中腕骨桡动脉保形接触力学能量损失研究

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The contact mechanics of Wrist prosthetic implant is considered in which the surface roughness of the implant is included. Total wrist replacements are developed to perform wrist function as near normal as possible. The main goal of wrist replacement surgery is to relieve patients from painful arthritis and to maintain function in the wrist and hand. The gradual wearing away of the cartilage covering on bones can lead to the most common form of arthritis, usually osteoarthritis. Wear is a very important issue in wrist implant. Metal debris caused by excessive wear in wrist implant can lead to toxicity and patient discomfort. Since implant wear can be the result of contact between surfaces of Carpal and Radial components, so the investigation of the effect of roughness between wrist components and establishing a model for interaction of surface roughness is very important. There are several different designs of wrist implant. Most of them have two components that are made of metal. A high quality plastic called polyethylene is used as a space between the two components. The purpose of this paper is to investigate the effect of roughness between interaction of these metal and polyethylene in wrist implants. This paper develops a contact model to treat the interaction of Carpal - Radial Components. The contact model describes the interaction of implant rough surfaces including both elastic and plastic deformations. In the model, surfaces are investigated as macroscopically conforming semi-Cylinder 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 the possible region of interaction of the roughness of the implant surfaces. Closed-form approximate equation relating contact force and minimum separation is used to obtain energy loss per cycle in a load-unload sequence applied to the implant.
机译:考虑腕部假体植入物的接触机构,其中包括植入物的表面粗糙度。开发了腕托替代品,以尽可能接近正常的腕部功能。腕托替代手术的主要目标是缓解患者患有痛苦的关节炎,并在手腕和手中保持功能。逐渐磨损骨骼上的软骨覆盖物可以导致最常见的关节炎形式,通常是骨关节炎。穿着是手腕植入物的一个非常重要的问题。手腕植入物过多引起的金属碎片可以导致毒性和患者的不适。由于植入物佩戴可以是腕骨和径向部件的表面之间接触的结果,因此对腕部组分之间的粗糙度的影响以及建立表面粗糙度相互作用的模型的研究非常重要。手腕植入物有几种不同的设计。其中大多数都有两个由金属制成的组件。一种称为聚乙烯的高质量塑料用作两个组分之间的空间。本文的目的是研究粗糙度在手腕植入物中的相互作用与聚乙烯之间的效果。本文开发了一种接触型号,以治疗腕部径向部件的相互作用。接触模型描述了植入物粗糙表面的相互作用,包括弹性和塑性变形。在模型中,研究表面作为宏观符合含有微米级粗糙度的半圆柱。衍生方程涉及植入物上的接触力和粗糙表面的最小平均表面分离。基于粗糙度高度的分布,使用植入表面的粗糙度的可能相互作用区域的粗糙度高度的统计整体函数表示力。相关接触力和最小分离的闭合形式近似方程用于在施加到植入物的负载卸载序列中获得每个循环的能量损失。

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