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两种不同表面形态下天然关节软骨的接触特性及摩擦性能研究

Investigation of contact characteristics and frictional properties of natural articular cartilage at two different surface configurations.

作者信息

Qian Shanhua, Zhang Liyong, Ni Zi Feng, Huang Chuanhui, Zhang Dekun

机构信息

School of Mechanical Engineer, Jiangnan University, Wuxi, 214122, People's Republic of China.

Department of Orthopedics, Yangzhou Hospital of Traditional Chinese Medicine, Yangzhou, 225009, People's Republic of China.

出版信息

J Mater Sci Mater Med. 2017 Jun;28(6):84. doi: 10.1007/s10856-017-5895-6. Epub 2017 Apr 26.

Abstract

Natural cartilage surfaces were macroscopically curved with multi-porous viscoelastic biologic materials with extremely high water, but whether curved surface configuration could play an important role on the contact and frictional properties of natural cartilages fails to be completely understood up to now. In this current study, cartilage samples came from the 18-24 month-old bovine femora. Contact characteristic and frictional properties at two cartilage configurations were investigated using the UMT-2 testing rig and the five-point sliding average method would be adopted to analyze these tested data. These results indicated the surface displacement was extremely associated with the plate cartilage surface and seemed to be a representative of cartilage surface configuration. The summit of the surface load lagged behind that of the surface displacement at the same condition. Coefficient of friction showed obviously different variation with time at two cartilage surface configurations due to the fact that these two surface displacements had different amplitudes and opposite directions as a function of the sliding length. Therefore, surface configuration played the main role on these variables of contact displacement, contact load and coefficient of friction due to the direction and magnitude of the surface displacement while applied load and sliding velocity had a secondary role. Natural cartilage surfaces were macroscopically curved with multi-porous viscoelastic biologic materials with extremely high water, but whether curved surface configuration could play an important role on the contact and frictional properties of natural cartilages fails to be completely understood up to now. In this study, two different cartilage configurations were adopted to investigate natural cartilage properties, and the five-point sliding average method would be used to analyze these tested data. These results indicated the contact displacement was consisted of cartilage deformation and surface displacement while contact load was composed of steady load and surface load (as shown in the figure, panels (a) and (b)). Surface displacement was greatly associated with the plate cartilage surface and seemed to be a representative of cartilage surface configuration. These two surface displacements had different amplitudes and opposite directions as a function of the sliding length (as shown in panel (c)). The summit of the surface load lagged behind that of the surface displacement at the same condition (as shown in panel (d)). Surface displacement and surface load in the contact characteristic of natural cartilages were extremely related with the cartilage configurations. and their correlation coefficients varied periodically with the moving time (as shown in panel (e)). Coefficient of friction showed obviously different variation with time (as shown in panel (f)). Therefore, surface configuration played the main role on these variables of contact displacement, contact load and coefficient of friction due to the direction and magnitude of the surface displacement while applied load and sliding velocity had a secondary role. Variation in contact and frictional properties of natural cartilage at two different surface configurations (a) Contact displacement and its parts varied with time; (b) Contact load and its parts varied with time;

摘要

天然软骨表面宏观上呈弯曲状,由具有极高含水量的多孔粘弹性生物材料构成,但迄今为止,弯曲表面形态是否会对天然软骨的接触和摩擦特性发挥重要作用仍未完全明确。在本研究中,软骨样本取自18至24月龄的牛股骨。使用UMT - 2测试装置研究了两种软骨形态下的接触特性和摩擦性能,并采用五点滑动平均法分析这些测试数据。这些结果表明,表面位移与平板软骨表面密切相关,似乎是软骨表面形态的一个代表。在相同条件下,表面载荷的峰值滞后于表面位移的峰值。由于这两种表面位移随滑动长度呈现出不同的幅度和相反的方向,因此在两种软骨表面形态下,摩擦系数随时间呈现出明显不同的变化。所以,由于表面位移的方向和大小,表面形态在接触位移、接触载荷和摩擦系数这些变量上起主要作用,而外加负载和滑动速度起次要作用。天然软骨表面宏观上呈弯曲状,由具有极高含水量的多孔粘弹性生物材料构成,但迄今为止,弯曲表面形态是否会对天然软骨的接触和摩擦特性发挥重要作用仍未完全明确。在本研究中,采用了两种不同的软骨形态来研究天然软骨特性,并使用五点滑动平均法分析这些测试数据。这些结果表明,接触位移由软骨变形和表面位移组成,而接触载荷由稳定载荷和表面载荷构成(如图(a)和(b)所示)。表面位移与平板软骨表面密切相关,似乎是软骨表面形态的一个代表。这两种表面位移随滑动长度呈现出不同的幅度和相反的方向(如图(c)所示)。在相同条件下,表面载荷的峰值滞后于表面位移的峰值(如图(d)所示)。天然软骨接触特性中的表面位移和表面载荷与软骨形态密切相关,并且它们的相关系数随移动时间呈周期性变化(如图(e)所示)。摩擦系数随时间呈现出明显不同的变化(如图(f)所示)。所以,由于表面位移的方向和大小,表面形态在接触位移、接触载荷和摩擦系数这些变量上起主要作用,而外加负载和滑动速度起次要作用。两种不同表面形态下天然软骨接触和摩擦性能的变化 (a) 接触位移及其组成部分随时间变化;(b) 接触载荷及其组成部分随时间变化;

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