首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Experimental and Finite Element Analysis of Force and Temperature in Ultrasonic Vibration Assisted Bone Cutting
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Experimental and Finite Element Analysis of Force and Temperature in Ultrasonic Vibration Assisted Bone Cutting

机译:超声振动辅助骨切割力与温度的实验和有限元分析

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摘要

Bone cutting is an essential procedure of orthopedic surgery, while irreversible bone damage would be inevitably caused using the conventional cutting (CC) method. In this study, an ultrasonic vibration-assisted cutting (UVAC) method was applied in bone cutting to investigate the cutting performance, considering the cutting force and temperature rise, in comparison with CC. In addition, a finite element (FE) model was developed to investigate the cutting mechanism and the influence of a wide range of processing parameters on the performance of cutting bone. The results indicate that the proposed FE model shows good correlation with the experimental results for both cutting force and temperature. UVAC can significantly reduce the cutting force and increase the temperature in comparison with CC from the experimental and predicted results. The cutting force tends to decrease with the increasing vibrational parameters and decreasing cutting speed, while the temperature increases. The verified FE bone cutting model provides an efficient way to assist the optimization of the processing conditions in bone cutting operations.
机译:骨切割是整形外科手术的基本程序,而使用常规切割(CC)方法将不可逆转的骨损伤是不可逆转的。在该研究中,与CC相比,在骨切割中施加超声振动辅助切割(UVAC)方法,以研究切割力和温度升高。此外,开发了有限元(FE)模型来研究切割机制和各种加工参数对切割骨骼性能的影响。结果表明,所提出的Fe模型与切割力和温度的实验结果表明良好的相关性。 UVAC可以显着降低切割力,并与来自实验和预测结果的CC相比,增加温度。在温度升高的同时,切割力趋于随着振动参数的增加和降低而降低。经过验证的Fe骨切割模型提供了有效的方法,可以帮助优化骨切割操作中的加工条件。

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