首页> 外文期刊>Journal of Applied Biomaterials & Biomechanics >Predicting fatigue life of a PMMA based knee spacer using a multiaxial fatigue criterion
【24h】

Predicting fatigue life of a PMMA based knee spacer using a multiaxial fatigue criterion

机译:使用多轴疲劳标准预测PMMA基膝关节间隔物的疲劳寿命

获取原文
获取原文并翻译 | 示例

摘要

Purpose. Experimental tests have played a major role in the assessment of fatigue endurance of orthopedic prostheses; how-ever, cyclic tests on devices entail high costs. Here, a multiaxial fatigue criterion coupled with computational simulations and material properties measurements has been employed to predict fatigue life of the tibial component of a polymeric PMMA spacer. The ultimate aim is to obtain valid information on fatigue behavior avoiding fatigue tests on the device. Methods. First, an accurate measurement of the static and fatigue properties of PMMA samples is performed. Then, numeric simulations of the fatigue behavior of the PMMA spacer reproducing the experimental test conditions according to ISO 14879-1 were carried out in order to calculate the stress field throughout the device. Finally, a Risk Index was calculated by using a proper multiaxial fatigue criterion for brittle materials (Kakuno-Kawada) for the assessment of the device fatigue behavior by predicting the F-N curves. Results. The numeric results were validated by comparing the predictions against experimental data already published by our group. The multiaxial fatigue criterion was able to predict the most critical point on the spacer upper surface and the fatigue behavior of the device that nicely matched the experimental curves. Conclusions. This approach represents a valuable tool to investigate the mechanical reliability of implantable devices; nev-ertheless, the use of advanced and specific failure criteria coupled with accurate data of the device's material is mandatory to represent a real alternative to the experimental approach in fatigue life prediction.
机译:目的。实验试验在评估骨科假体的疲劳耐久性评估中发挥了重要作用;有史以来,在设备上的循环测试需要高成本。这里,已经采用与计算模拟和材料特性测量结合的多轴疲劳标准来预测聚合物PMMA间隔物的胫骨部件的疲劳寿命。最终目标是获取有关疲劳行为的有效信息,避免了设备上的疲劳测试。方法。首先,执行PMMA样本的静态和疲劳性能的精确测量。然后,进行根据ISO 14879-1再现实验测试条件的PMMA间隔物的疲劳行为的数值模拟,以便在整个装置中计算应力场。最后,通过使用针对脆性材料(Kakuno-Kawada)的适当的多轴疲劳标准来计算风险指数,以通过预测F-N曲线评估器件疲劳行为。结果。通过比较我们组已发表的实验数据的预测来验证数字结果。多轴疲劳标准能够预测间隔物上表面上的最关键点以及恰好匹配实验曲线的装置的疲劳行为。结论。这种方法代表了研究可植入装置的机械可靠性的有价值的工具; Nev-尽管,使用高级和特定的故障标准与设备材料的准确数据相结合是强制性的,以代表疲劳寿命预测中的实验方法的实际替代。

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