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骨骼中恒定应力下短裂纹扩展的机制。

Mechanisms of short crack growth at constant stress in bone.

作者信息

Hazenberg Jan Geert, Taylor David, Clive Lee Thomas

机构信息

Trinity Centre for Bioengineering, Trinity College, Dublin 2, Ireland.

出版信息

Biomaterials. 2006 Mar;27(9):2114-22. doi: 10.1016/j.biomaterials.2005.09.039. Epub 2005 Oct 21.

Abstract

This paper describes an experimental study of the growth of small (i.e. sub-millimetre) cracks in samples of cortical bone subjected to a constant tensile stress. Slow, stable crack growth occurred at a rate and angle which were dependent on the orientation of the sample: tests were conducted with the loading axis both parallel and perpendicular to the longitudinal axis of the bone. All cracks showed intermittent growth in which periods of relatively rapid propagation alternated with periods of temporary crack arrest or relatively slow growth. In some cases crack arrest could be clearly linked to microstructural features such as osteons or Volkmann's canals, which acted as barriers to crack growth. Crack-opening displacement increased over time during the arrest periods. These observations suggest a mechanism for the growth of small cracks in bone at constant stress, involving microstructural barriers, time-dependent deformation of material near the crack tip and strain-controlled propagation.

摘要

本文描述了一项关于在恒定拉伸应力作用下皮质骨样本中微小(即亚毫米级)裂纹扩展的实验研究。缓慢、稳定的裂纹扩展以一定速率和角度发生,该速率和角度取决于样本的取向:在加载轴与骨的纵轴平行和垂直两种情况下都进行了测试。所有裂纹均呈现间歇性扩展,其中相对快速扩展阶段与暂时裂纹停滞或相对缓慢扩展阶段交替出现。在某些情况下,裂纹停滞可明确与诸如骨单位或福尔克曼管等微观结构特征相关联,这些特征对裂纹扩展起到了阻碍作用。在停滞阶段,裂纹张开位移随时间增加。这些观察结果表明了一种在恒定应力下骨中微小裂纹扩展的机制,该机制涉及微观结构屏障、裂纹尖端附近材料的时间依赖性变形以及应变控制的扩展。

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