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Micro-mechanical damage of trabecular bone-cement interface under selected loading conditions: a finite element study

机译:选定载荷条件下小梁-骨水泥界面的微机械损伤:有限元研究

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摘要

In this study, two micro finite element models of trabecular bone-cement interface developed from high resolution computed tomography (CT) images were loaded under compression and validated using the in situ experimental data. The models were then used under tension and shear to examine the load transfer between the bone and cement and the micro damage development at the bone-cement interface. In addition, one models was further modified to investigate the effect of cement penetration on the bone-cement interfacial behaviour. The simulated results show that the load transfer at the bone-cement interface occurred mainly in the bone cement partially interdigitated region, while the fully interdigitated region seemed to contribute little to the mechanical response. Consequently, cement penetration beyond a certain value would seem to be ineffective in improving the mechanical strength of trabecular bone-cement interface. Under tension and shear loading conditions, more cement failures were found in denser bones, while the cement damage is generally low under compression.
机译:在这项研究中,从高分辨率计算机断层扫描(CT)图像开发的两个小梁骨水泥界面微有限元模型在压缩下加载,并使用原位实验数据进行了验证。然后在拉伸和剪切作用下使用这些模型检查骨骼和水泥之间的载荷转移以及骨骼-水泥界面处的微损伤发展。此外,对一个模型进行了进一步修改,以研究水泥渗透对骨水泥界面行为的影响。仿真结果表明,在骨水泥界面处的载荷转移主要发生在骨水泥部分叉指的区域,而完全叉指的区域似乎对机械响应的贡献很小。因此,超过一定值的水泥渗透似乎对改善小梁骨水泥界面的机械强度无效。在拉伸和剪切载荷条件下,在密实的骨骼中发现了更多的水泥破坏,而在压缩情况下,水泥破坏通常较低。

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