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Thermo-mechanical stresses distribution on bone drilling: Numerical and experimental procedures

机译:骨钻孔上的热机械应力分布:数值和实验程序

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摘要

In bone drilling, the temperature and the level of stresses at the bone tissue are function of the drilling parameters. If certain thresholds are exceeded, irreversible damages may occur on the bone tissue. One of the main challenges in the drilling process is to control the associated parameters and even more important, to avoid the surrounding tissue damage. In this study, a dynamic numerical model is developed to determine the thermo-mechanical stresses generated during the bone drilling, using the finite element method. The numerical model incorporates the geometric and dynamic characteristics involved in the drilling processes, as well the developed temperature inside the material. The numerical analysis has been validated by experimental tests using polyurethane foam materials with similar mechanical properties to the human bone. Results suggest that a drill bit with lower drill speed and higher feed rate can reduce the strains and stresses in bone during the drilling process. The proposed numerical model reflected adequately the experimental results and could be useful in determination of optimal drilling conditions that minimise the bone injuries.
机译:在骨钻孔中,骨组织上的温度和应力水平是钻孔参数的函数。如果超过某些阈值,可能会在骨组织上发生不可逆的损害。钻孔过程中的主要挑战之一是控制相关参数,甚至更重要的是避免周围组织的损伤。在这项研究中,使用有限元方法建立了一个动态数值模型,以确定在骨钻孔过程中产生的热机械应力。数值模型结合了钻孔过程中涉及的几何和动态特性,以及材料内部的温度升高。数值分析已通过使用聚氨酯泡沫材料的实验测试得到验证,聚氨酯泡沫材料具有与人体骨骼相似的机械性能。结果表明,钻速较低,进给速度较高的钻头可以减少钻孔过程中骨骼的应变和应力。所提出的数值模型充分地反映了实验结果,并且对于确定最小化骨损伤的最佳钻孔条件可能有用。

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