首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Morphology based cohesive zone modeling of the cement-bone interface from postmortem retrievals.
【24h】

Morphology based cohesive zone modeling of the cement-bone interface from postmortem retrievals.

机译:死后取回的水泥骨界面基于形态的内聚区建模。

获取原文
获取原文并翻译 | 示例
           

摘要

In cemented total hip arthroplasty, the cement-bone interface can be considerably degenerated after less than one year in vivo service; this makes the interface much weaker relative to the direct post-operative situation. It is, however, still unknown how these degenerated interfaces behave under mixed-mode loading and how this is related to the interface morphology. In this study, we used a finite element (FE) approach to analyze the mixed-mode response of the cement-bone interface taken from postmortem retrievals. We investigated whether it was feasible to generate a fully elastic and a failure cohesive model based on only morphological input parameters. Computed tomography-based FE-models of postmortem cement-bone interfaces were generated and the interface morphology was determined. The models were loaded until failure in multiple directions by allowing cracking of the bone and cement components and including periodic boundary conditions. The resulting stiffness was related to the interface morphology. A closed form mixed-mode cohesive model that included failure was determined and related to the interface morphology. The responses of the FE-simulations compare satisfactorily with experimental observations, albeit the magnitude of the strength and stiffness are somewhat overestimated. Surprisingly, the FE-simulations predict no failure under shear loading and a considerable normal compression is generated which prevents dilation of the interface. The obtained mixed-mode stiffness response could subsequently be related to the interface morphology and subsequently be formulated into an elastic cohesive zone model. Finally, the acquired data could be used as an input for a cohesive model that also includes interface failure.
机译:在骨水泥全髋关节置换术中,在体内服务不到一年后,骨水泥界面可能会严重退化。相对于直接的术后情况,这使得界面弱得多。但是,仍然不清楚这些退化的接口在混合模式负载下的行为以及与接口形态的关系。在这项研究中,我们使用了有限元(FE)方法来分析取自尸体取回的水泥骨界面的混合模式响应。我们研究了仅基于形态学输入参数生成完全弹性和失效内聚模型是否可行。生成了基于层析成像的死后骨水泥界面有限元模型,并确定了界面形态。通过允许骨骼和水泥成分开裂并包括周期性边界条件,将模型加载到多个方向,直到失效。所得的刚度与界面形态有关。确定了包含故障的闭合形式混合模式内聚模型,该模型与界面形态有关。 FE模拟的响应与实验观察结果令人满意,尽管强度和刚度的大小有些高估了。出人意料的是,有限元模拟预测在剪切载荷下不会发生破坏,并且会产生相当大的法向压缩,从而防止界面膨胀。所获得的混合模式刚度响应可以随后与界面形态相关,并随后被公式化为弹性内聚区模型。最后,所获得的数据可以用作内聚模型的输入,该模型也包括接口故障。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号