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Finite Element Analysis and Statistical Method to DetermineudTemperature Distribution on Cutting Tool in End-Millingud

机译:确定的有限元分析和统计方法端铣中切削刀具的温度分布 ud

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摘要

The aim of this study is to determine the temperature distribution on cutting tool when machining HASTELLOY C-22HS with carbide coated cutting tool. Response Surface Method (RSM) used to minimize the number of experiments and to develop first order temperature model. Finite element analysis (FEA) was used to verification of theudtemperature distribution on cutting tool. From FEA results show clearly that the relationship between the variables (cutting speed, feed rate and axial depth) with responses (temperature). From the first order model shows that cutting speed, feed rate and axial depth plays important role in producing cutting temperature. The feed rate has the most dominant parameter on the temperature, followed by the axial depth and cutting speed. Theudresults from FEA were compared with the experimental values. The predicted values are quite close to the experimental results, even though its accuracy is slightly inferior as Finite Element Analysis and Statistical Method to Determine Temperature Distribution on Cutting Tool in End-Milling 452 compared to RSM. However, FEA is able to produce the temperature distribution around the cutting tool, in great detail.
机译:这项研究的目的是确定在使用硬质合金切削刀具加工HASTELLOY C-22HS时切削刀具上的温度分布。响应面法(RSM)用于最大程度地减少实验次数并开发一阶温度模型。有限元分析(FEA)用于验证切削工具上的高温分布。从有限元分析得出的结果清楚地表明,变量(切削速度,进给速度和轴向深度)与响应(温度)之间的关系。从一阶模型可以看出,切削速度,进给速度和轴向深度在产生切削温度中起着重要作用。进给速度是温度的最主要参数,其次是轴向深度和切削速度。将FEA的结果与实验值进行比较。尽管与RSM相比,在End Milling 452中切削工具温度分布的有限元分析和统计方法的准确性稍差,但预测值仍与实验结果非常接近。但是,FEA能够非常详细地产生切削刀具周围的温度分布。

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