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采用霍普金森杆应力技术测定人股骨皮质骨的力学性能。

Determination of mechanical properties of human femoral cortical bone by the Hopkinson bar stress technique.

作者信息

Katsamanis F, Raftopoulos D D

机构信息

Hellenic Naval Academy, Piraeous, Greece.

出版信息

J Biomech. 1990;23(11):1173-84. doi: 10.1016/0021-9290(90)90010-z.

Abstract

The Hopkinson bar stress technique and a universal testing machine (Instron 1125) have been used to investigate the dynamic and static mechanical properties of cortical bone taken from a human femur respectively. We found that the average dynamic Young's modulus value (Ed = 19.9 GPa) to be 23% higher than the average static Young's modulus value (Ed = 16.2 GPa). Furthermore, the Poisson's ratio did not exhibit any significant variation for the two different types of loading. No difference was observed between the values of the dynamic Young's modulus in tension and those found in compression. A comparison was made of the results of this study with those found by other researchers using different techniques, such as ultrasonics, and it was found that they agree well with most of the results of previous studies. Finally, the viscosity for cortical bone found in this study correlates with viscosity reported by Tennyson et al. [Expl Mech. 12, 502-507 (1972)] for ten days post mortem age specimens.

摘要

分别使用霍普金森杆应力技术和万能材料试验机(英斯特朗1125型)来研究取自人股骨的皮质骨的动态和静态力学性能。我们发现,动态杨氏模量的平均值(Ed = 19.9吉帕)比静态杨氏模量的平均值(Ed = 16.2吉帕)高23%。此外,泊松比在两种不同类型的加载下未表现出任何显著变化。拉伸时的动态杨氏模量值与压缩时的动态杨氏模量值之间未观察到差异。将本研究结果与其他研究人员使用不同技术(如超声波技术)得到的结果进行了比较,发现它们与先前大多数研究结果吻合良好。最后,本研究中发现的皮质骨粘度与坦尼森等人[《实验力学》。12, 502 - 507 (1972)]报道的死后十天龄标本的粘度相关。

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