Jagatia M, Jalali-Vahid D, Jin Z M
Department of Mechanical and Medical Engineering, University of Bradford, West Yorkshire BD7 1DP, UK.
Proc Inst Mech Eng H. 2001;215(2):141-52. doi: 10.1243/0954411011533706.
Elastohydrodynamic lubrication was analysed under squeeze-film or normal approach motion for artificial hip joint replacements consisting of an ultra-high molecular weight polyethylene (UHMWPE) acetabular cup and a metallic or ceramic femoral head. A simple ball-in-socket configuration was adopted to represent the hip prosthesis for the lubrication analysis. Both the Reynolds equation and the elasticity equations were solved simultaneously for the lubricant film thickness and hydrodynamic pressure distribution as a function of the squeeze-film time was solved using the Newton-Raphson method. The elastic deformation of the UHMWPE cup was calculated by both the finite element method and a simple equation based upon the constrained column model. Good agreement of the predicted film thickness and pressure distribution was found between these two methods. A simple analytical method based upon the Grubin-Ertel-type approximation developed by Higginson in 1978 [1] was also applied to the present squeeze-film lubrication problem. The predicted squeeze-film thickness from this simple method was found to be remarkably close to that from the full numerical solution. The main design parameters were the femoral head radius, the radial clearance between the femoral head and the acetabular cup, and the thickness and elastic modulus for the UHMWPE cup; the effects of these parameters on the squeeze-film thickness generated in current hip prostheses were investigated.
针对由超高分子量聚乙烯(UHMWPE)髋臼杯和金属或陶瓷股骨头组成的人工髋关节置换物,在挤压膜或法向接近运动下对弹性流体动力润滑进行了分析。采用简单的球窝配置来代表髋关节假体进行润滑分析。同时求解雷诺方程和弹性方程,以得到润滑膜厚度和流体动力压力分布,作为挤压膜时间的函数,使用牛顿-拉夫逊方法求解。通过有限元法和基于约束柱模型的简单方程计算UHMWPE杯的弹性变形。在这两种方法之间发现预测的膜厚度和压力分布具有良好的一致性。一种基于1978年希金森提出的格鲁宾-埃特尔型近似的简单解析方法也应用于当前的挤压膜润滑问题。发现这种简单方法预测的挤压膜厚度与全数值解的结果非常接近。主要设计参数包括股骨头半径、股骨头与髋臼杯之间的径向间隙以及UHMWPE杯的厚度和弹性模量;研究了这些参数对当前髋关节假体中产生的挤压膜厚度的影响。