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关节软骨损伤演化的力学机制

On mechanical mechanism of damage evolution in articular cartilage.

作者信息

Men Yu-Tao, Jiang Yan-Long, Chen Ling, Zhang Chun-Qiu, Ye Jin-Duo

机构信息

Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System, PR China.

Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Sep 1;78:79-87. doi: 10.1016/j.msec.2017.03.289. Epub 2017 Apr 1.

Abstract

Superficial lesions of cartilage are the direct indication of osteoarthritis. To investigate the mechanical mechanism of cartilage with micro-defect under external loading, a new plain strain numerical model with micro-defect was proposed and damage evolution progression in cartilage over time has been simulated, the parameter were studied including load style, velocity of load and degree of damage. The new model consists of the hierarchical structure of cartilage and depth-dependent arched fibers. The numerical results have shown that not only damage of the cartilage altered the distribution of the stress but also matrix and fiber had distinct roles in affecting cartilage damage, and damage in either matrix or fiber could promote each other. It has been found that the superficial cracks in cartilage spread preferentially along the tangent direction of the fibers. It is the arched distribution form of fibers that affects the crack spread of cartilage, which has been verified by experiment. During the process of damage evolution, its extension direction and velocity varied constantly with the damage degree. The rolling load could cause larger stress and strain than sliding load. Strain values of the matrix initially increased and then decreased gradually with the increase of velocity, and velocity had a greater effect on matrix than fibers. Damage increased steadily before reaching 50%, sharply within 50 to 85%, and smoothly and slowly after 85%. The finding of the paper may help to understand the mechanical mechanism why the cracks in cartilage spread preferentially along the tangent direction of the fibers.

摘要

软骨的表面损伤是骨关节炎的直接指征。为了研究外部加载下具有微缺陷的软骨的力学机制,提出了一种新的含微缺陷平面应变数值模型,并模拟了软骨随时间的损伤演化过程,研究了加载方式、加载速度和损伤程度等参数。新模型由软骨的分层结构和深度依赖的拱形纤维组成。数值结果表明,软骨损伤不仅改变了应力分布,而且基质和纤维在影响软骨损伤方面具有不同作用,基质或纤维中的损伤会相互促进。研究发现,软骨中的表面裂纹优先沿纤维切线方向扩展。正是纤维的拱形分布形式影响了软骨裂纹扩展,这已通过实验得到验证。在损伤演化过程中,其扩展方向和速度随损伤程度不断变化。滚动载荷比滑动载荷能引起更大的应力和应变。基质应变值最初随速度增加而增大,然后逐渐减小,速度对基质的影响比对纤维的影响更大。损伤在达到50%之前稳步增加,在50%至85%之间急剧增加,在85%之后平稳缓慢增加。本文的研究结果可能有助于理解软骨裂纹优先沿纤维切线方向扩展的力学机制。

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