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Investigation of dry cutting and mist cutting in ball end milling based on response surface analysis

机译:基于响应面分析的球头铣削干切削和薄雾切削研究

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In order to reduce the use of cutting fluid and the environmental hazard, this paper presents the investigation of the machinability of ball-end milling process with the dry cutting and the mist cutting for carbon steel on 5-axis CNC machining center. The relations of the surface roughness, the flank wear, and the cutting parameters, which are the spindle speed, the feed rate, and the depth of cut, are examined and analyzed based on the experimental results by using the Response Surface Analysis with the Box-Behnken design and the analysis of variance. The in-process cutting force is also monitored to analyze the relations of the surface roughness, the flank wear, and the cutting parameters. The dynamometer is installed on the table of 5-axis CNC machining center to measure the in-process cutting forces. The proper cutting condition for the dry cutting and the mist cutting can be determined easily referring to the minimum surface roughness of the surface plot, which is calculated by the surface roughness model obtained from the Response Surface Analysis. The effectiveness of the obtained surface roughness model has been proved by utilizing the analysis of variance at 95% confident level.
机译:为了减少切削液的使用和对环境的危害,本文对5轴CNC加工中心的碳钢干切削和薄雾切削进行球头铣削加工的可加工性进行了研究。根据实验结果,使用带盒的响应表面分析,检查并分析了表面粗糙度,后刀面磨损和切削参数(即主轴速度,进给速度和切削深度)之间的关系。 -Behnken设计和方差分析。还监视加工中的切削力,以分析表面粗糙度,后刀面磨损和切削参数之间的关系。测力计安装在5轴CNC加工中心的工作台上,以测量过程中的切削力。可以参考表面图的最小表面粗糙度轻松确定干切和薄雾切割的合适切割条件,该最小表面粗糙度是通过从“响应表面分析”获得的表面粗糙度模型计算得出的。通过利用95%置信水平下的方差分析证明了所获得的表面粗糙度模型的有效性。

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