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Life estimation of knee joint prosthesis by combined effect of fatigue and wear

机译:疲劳磨损综合效应膝关节假体的寿命估算

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A total knee replacement (TKR) or total knee arthroplasty (TKA) is a surgery that replaces an arthritic knee joint with an artificial metal or plastic replacement parts called the 'prostheses'. The typical knee replacement, replaces the ends of the femur with metal femoral component and tibia with metal tibial component and plastic insert is inserted between them. During the walking cycle, knee joint prosthesis is subjected to cyclic loading which causes fatigue failure and sliding present between insert and femoral component enhances the wear process in plastic insert. In other words, the fatigue fracture and wear are basic mechanisms associated with knee joint prosthesis failure. In the previous failure analysis, fatigue and wear were separately analyzed. This paper estimates the life of Knee Prosthesis due to wear and fatigue individually as well as combined effect of both. Prosthetic material such as UHMWPE for insert & Ti6A14V, CoCrMo and 316L SS alloy for femoral and tibial component are chosen for analysis. To estimate wear, modified Archard's law is used, considering cross-shear motions responsible for wear. This wear results are used for estimation of prosthetic life. Fatigue phenomena is approached by using Finite Element Method (FEM) which gives life expectancy of knee prosthesis for various combination of materials and finally the combined effect of wear and fatigue is dealt that gives life expectancy of knee prosthesis.
机译:总膝关节置换(TKR)或全膝关节置换术(TKA)是一种手术,其用人造金属或称为“假体”的人造金属或塑料替换部件取代关节炎膝关节。典型的膝盖替换,用金属股骨部件和胫骨用金属胫骨部件和塑料插入物插入它们之间的股骨的末端。在步行循环期间,膝关节假体受到循环负载,导致疲劳失效,插入件和股骨部件之间的滑动增强了塑料插入件中的磨损过程。换句话说,疲劳骨折和磨损是与膝关节假体失效相关的基本机制。在先前的故障分析中,分别分析疲劳和磨损。本文估计膝关节假体的寿命因磨损和疲劳而单独的磨损以及两者的组合效果。选择诸如UHMWPE的假体材料,适用于刀片和Ti6a14V,CocrMo和316L SS合金用于股骨和胫骨组分进行分析。为了估算磨损,考虑负责磨损的交叉剪切动作,使用改进的Archard的定律。这种磨损结果用于估计假肢生命。通过使用有限元方法(FEM)来接近疲劳现象,该方法为各种材料组合培养膝关节假体的寿命,最后涉及佩戴和疲劳的综合影响,赋予膝关节假体的预期寿命。

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