Prediction of Cutting Force in Bone Cutting Using Finite Element Analysis

V. Prasannavenkadesan, P. Pandithevan
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Abstract

In orthopedic surgery, bone cutting is an indispensable procedure followed by the surgeons to treat the fractured and fragmented bones. Because of the unsuitable parameter values used in the cutting processes, micro crack, fragmentation, and thermal osteonecrosis of bone are observed. Therefore, prediction of suitable cutting force is essential to subtract the bone without any adverse effect. In this study, the Cowper-Symonds model for bovine bone was developed for the first time. Then the developed model was coupled with the finite element analysis to predict the cutting force. To determine the model constants, tensile tests with different strain rates (10−5/s, 10−4/s, 10−3/s, and 1/s) were conducted on the cortical bone specimens. The developed material model was implemented in the bone cutting simulation and validated with the experiments.
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基于有限元分析的骨切削力预测
在骨科手术中,骨切割是外科医生治疗骨折和碎骨不可缺少的手术步骤。由于切割过程中使用的参数值不合适,观察到骨的微裂纹,碎裂和热骨坏死。因此,预测合适的切削力是必不可少的减去骨没有任何不利影响。本研究首次建立了牛骨的Cowper-Symonds模型。然后将所建立的模型与有限元分析相结合进行切削力预测。为了确定模型常数,对皮质骨试件进行了不同应变速率(10−5/s、10−4/s、10−3/s和1/s)的拉伸试验。将所建立的材料模型应用于骨切割仿真,并进行了实验验证。
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