股骨头
有限元法
接触力学
接触面积
压力(语言学)
主管(地质)
接头(建筑物)
材料科学
步态周期
结构工程
接触力
步态
机械
复合材料
工程类
法律工程学
地质学
运动学
哲学
古生物学
物理
地貌学
量子力学
生物
生理学
语言学
经典力学
作者
Xingxing Fang,Dahan Li,Yucheng Xin,Songquan Wang,Yongbo Guo,Ningning Hu,Dekun Zhang
出处
期刊:Industrial Lubrication and Tribology
[Emerald (MCB UP)]
日期:2021-11-17
卷期号:73 (10): 1302-1309
被引量:1
标识
DOI:10.1108/ilt-07-2021-0261
摘要
Purpose The purpose of this paper is to systematically study the dynamic contact stress, frictional heat and temperature field of femoral head-on-acetabular cup contact pairs in a gait cycle. Design/methodology/approach In this paper, four common femoral head-on-acetabular cup contact pairs are used as the research objects, mathematical calculations and finite element simulations are adopted. The contact model of hip joint head and acetabular cup was established by finite element simulation to analyze the stress and temperature distribution of the contact interface. Findings The results show that the contact stress of the head-on-cup interface is inversely proportional to the contact area; high contact stress directly leads to greater frictional heat. However, hip joints with metal-on-polyethylene or ceramic-on-polyethylene paired interfaces have lower frictional heat and show a significant temperature rise in one gait cycle, which may be related to the material properties of the acetabular cup. Originality/value Previous studies about calculating the interface frictional heat always ignore the dynamic change process in the contact load and the contact area. This study considered the dynamic changes of the contact stress and area of the femoral head-on-acetabular cup interface, and four common contact pairs were systematically analyzed.
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