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Optimization of bone drilling parameters using Taguchi method based on finite element analysis

机译:基于有限元分析的Taguchi法优化骨钻参数

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Thermal necrosis results fracture problems and implant failure if temperature exceeds 47 °C for one minute during bone drilling. To solve this problem, this work studied a new thermal model by using three drilling parameters: drill diameter, feed rate and spindle speed. Effects of those parameters to heat generation were studied. The drill diameters were 4 mm, 6 mm and 6 mm; the feed rates were 80 mm/min, 100 mm/min and 120 mm/min whereas the spindle speeds were 400 rpm, 500 rpm and 600 rpm then an optimization was done by Taguchi method to which combination parameter can be used to prevent thermal necrosis during bone drilling. The results showed that all the combination of parameters produce confidence results which were below 47 °C and finite element analysis combined with Taguchi method can be used for predicting temperature generation and optimizing bone drilling parameters prior to clinical bone drilling. All of the combination parameters can be used for surgeon to achieve sustainable orthopaedic surgery.
机译:热坏死结果断裂问题和植入物失效如果在骨钻期间温度超过47℃。为了解决这个问题,这项工作通过使用三个钻孔参数研究了一种新的热模型:钻头直径,进料速率和主轴速度。研究了这些参数对发热的影响。钻头直径为4毫米,6毫米和6毫米;进料速率为80毫米/分钟,100毫米/分钟和120毫米/分钟,而主轴速度为400 rpm,500rpm和600rpm,然后通过Taguchi方法进行优化,可以使用组合参数来防止热坏死在骨钻时。结果表明,参数的所有组合产生低于47°C的置信度和与Taguchi方法相结合的有限元分析,可用于预测临床骨钻井前的温度发电和优化骨钻头参数。所有组合参数都可用于外科医生以实现可持续整形外科手术。

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