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Comparative Analysis of Cutting Forces, Torques, and Vibration in Drilling of Bovine, Porcine, and Artificial Femur Bone with Considerations for Robot Effector Stiffness

机译:牛,猪和人工股骨钻井中切割力,扭矩和振动的比较分析,考虑机器人效应刚度

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摘要

Bone drilling is known as one of the most sensitive milling processes in biomedical engineering field. Fracture behavior of this cortical bone during drilling has attracted the attention of many researchers; however, there are still impending concerns such as necrosis, tool breakage, and microcracks due to high cutting forces, torques, and high vibration while drilling. This paper presents a comparative analysis of the cutting forces, torques, and vibration resulted on different bone samples (bovine, porcine, and artificial femur) using a 6dof Robot arm effector with considerations of its stiffness effects. Experiments were conducted on two spindle speeds of 1000 and 1500 rpm with a drill bit diameter of 2.5 mm and 6 mm depth of cut. The results obtained from the specimens were processed and analyzed using MATLAB R2015b and Visio 2000 software; these results were then compared with a prior test using manual and conventional drilling methods. The results obtained show that there is a significant drop in the average values of maximum drilling force for all the bone specimens when the spindle speed changes from 1000 rev/min to 1500 rev/min, with a drop from (20.07 to 12.34 N), approximately 23.85% for bovine, (11.25 to 8.14 N) with 16.03% for porcine, and (5.62 to 3.86 N) with 33.99% for artificial femur. The maximum average values of torque also decrease from 41.2 to 24.2 N·mm (bovine), 37.0 to 21.6 N·mm (porcine), and 13.6 to 6.7 N·mm (artificial femur), respectively. At an increase in the spindle speed, the vibration amplitude on all the bone samples also increases considerably. The variation in drilling force, torque, and vibration in our result also confirm that the stiffness of the robot effector joint has negative effect on the bone precision during drilling process.
机译:骨钻被称为生物医学工程领域中最敏感的铣削过程之一。钻井期间这种皮质骨的断裂行为引起了许多研究人员的注意;然而,由于高切割力,扭矩和高振动,仍存在迫切令人疑虑,例如坏死,刀具破损和微裂纹,同时钻孔。本文介绍了切割力,扭矩和振动的比较分析,导致不同的骨样品(牛,猪和人工股骨),考虑到其刚度效应,使用6dof机器人臂执行器。实验在两个主轴速度为1000和1500转,钻头直径为2.5mm和6mm的切割深度。使用MATLAB R2015B和Visio 2000软件处理和分析从标本获得的结果;然后使用手动和常规钻孔方法将这些结果与先前的测试进行比较。获得的结果表明,当主轴速度从1000次rev / min变为1500 rev / min时,所有骨标本的最大钻孔力的平均值存在显着下降,从(20.07至12.34n)下降,牛约23.85%,猪(11.25至8.14n),猪16.03%,(5.62〜3.86 n),人工股骨33.99%。扭矩的最大平均值也分别从41.2-24.2N·mm(牛),37.0至21.6n·mm(猪)和13.6至6.7 n·mm(人工股骨)降低。在主轴速度的增加时,所有骨样品上的振动幅度也显着增加。我们的结果中钻孔力,扭矩和振动的变化也证实,机器人效应接头的刚度对钻井过程中的骨精度具有负面影响。

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