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Optimization of bone drilling process based on finite element analysis

机译:基于有限元分析的骨钻工艺优化

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Bone drilling is frequently used in modern surgery operations, especially in fracture treatment. Drilling temperature should be strictly controlled, since when the temperature is 47 degrees C higher over 60 s, irreversible damages happen to bone. The study investigated the heat transfer of bone drilling by a three-dimensional model based on finite element method. Three principal drilling parameters were studied: feed rate, spindle speed and drill diameter. A parametric study proved that drilling temperature increases once any of three parameters rises. Parameters' effects on drilling temperature are proved synergistic. An empirical formula of maximum drilling temperature depending on three drilling parameters is given with a sensitivity analysis. To a drilling process of surgical operations, this formula could be used for temperature prediction and optimization of parameters respecting drilling temperature. Furthermore, the intermittent feed drilling is proposed and demonstrated to be very efficient to reduce thermal necrosis to bone tissue. (C) 2016 Elsevier Ltd. All rights reserved.
机译:骨钻经常用于现代外科手术中,尤其是在骨折治疗中。钻孔温度应严格控制,因为当温度在60 s内升高47摄氏度时,会对骨骼造成不可逆转的损害。该研究通过基于有限元方法的三维模型研究了骨钻的热传递。研究了三个主要的钻孔参数:进给速度,主轴转速和钻头直径。参数研究证明,一旦三个参数中的任何一个升高,钻孔温度就会升高。参数对钻井温度的影响被证明是协同的。通过敏感性分析给出了取决于三个钻井参数的最高钻井温度的经验公式。对于外科手术的钻孔过程,该公式可用于温度预测和关于钻孔温度的参数优化。此外,提出并证明了间歇进给钻削对于减少对骨组织的热坏死非常有效。 (C)2016 Elsevier Ltd.保留所有权利。

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