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首页> 外文期刊>American journal of applied sciences >Power Prediction Model for Milling 618 Stainless Steel Using Response Surface Methodology | Science Publications
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Power Prediction Model for Milling 618 Stainless Steel Using Response Surface Methodology | Science Publications

机译:响应面法的618不锈钢铣削功率预测模型|科学出版物

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> This study discussed the development of the first and second order power prediction model for milling 618 stainless steel with coated carbides cutting tool. The first and second order model has been developed by using response surface methodology with 4 factors. The surface methodology has been analysis by using statistical software Minitab. From the model the equation that relates the factors (cutting speed, feed rate, axial depth and radial depth) with the response (power) can be developed. Beside the relationship, the effect of the factors can be investigated from the equation develop. From the equation develop; the contour plot can be generated to predict the power at any zone of experimental zone. The model generated show that the power increases when cutting speed, feed rate, axial depth and radial depth are increased. The second-order is more accurate compare with the first order.
机译: >这项研究讨论了用涂层碳化物切削刀具铣削618不锈钢的一阶和二阶功率预测模型的开发。一阶和二阶模型是通过使用具有四个因素的响应面方法开发的。使用统计软件Minitab对表面方法进行了分析。通过该模型,可以开发出将因素(切削速度,进给速度,轴向深度和径向深度)与响应(功率)相关联的方程。除了这种关系,还可以从方程发展中研究因素的影响。从方程式发展;可以生成等高线图以预测实验区域任何区域的功率。生成的模型表明,当切削速度,进给速度,轴向深度和径向深度增加时,功率增加。与一阶相比,二阶更准确。

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