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在颅骨研磨过程中对加工力、扭矩和骨质量进行体内评估。

In vivo evaluation of machining forces, torque, and bone quality during skull bone grinding.

机构信息

Department of Mechanical Engineering, Thapar Institute of Engineering and Technology (TIET), Patiala, India.

出版信息

Proc Inst Mech Eng H. 2020 Jun;234(6):626-638. doi: 10.1177/0954411920911499. Epub 2020 Mar 17.

Abstract

This study investigates neurosurgical bone grinding with varying parameters on skull bone using a miniature grinding burr. Three process parameters, namely, rotational speed, feed rate, and depth of cut, have been investigated at three different levels in the terms of tangential force, thrust force, and torque generated during grinding. The results revealed that as the rotational speed is increased, the cutting forces and torque showed a decreasing trend. Nevertheless, the increase in feed rate and depth of cut leads to the escalation in response characteristics. The best parametric combination for minimum cutting forces and torque is as follows: rotational speed = 55,000 r/min, feed rate = 20 mm/min, and depth of cut = 0.50 mm. Morphological analysis reveals cracks in the bone's surface at a higher feed rate. Furthermore, delamination and cutting streaks are also visible on the surface of the bone after grinding. Energy-dispersive spectroscopy and elemental mapping of the tool after bone grinding indicate the accumulation of the bone chips in the successive diamond abrasives. The outcomes of the study will be beneficial for the neurosurgeons in understanding the effect of various process parameters on cutting force, toque, microcracks, and bone's regeneration ability during surgical bone grinding.

摘要

本研究使用微型磨钻,针对颅骨进行不同参数条件下的神经外科骨研磨。在研磨过程中,研究了三个工艺参数,即转速、进给率和切削深度,它们分别在三个不同水平上对切向力、进给力和扭矩进行了研究。结果表明,随着转速的增加,切削力和扭矩呈现出下降的趋势。然而,进给率和切削深度的增加导致响应特性的增加。最小切削力和扭矩的最佳参数组合如下:转速=55,000r/min、进给率=20mm/min、切削深度=0.50mm。形态分析显示,在较高的进给率下,骨表面出现裂纹。此外,研磨后骨表面还可见分层和切削条纹。对骨研磨后的工具进行能谱分析和元素映射表明,在连续的金刚石磨料中积累了骨屑。该研究的结果将有助于神经外科医生了解在手术骨研磨过程中,各种工艺参数对切削力、扭矩、微裂纹和骨再生能力的影响。

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