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Process modeling of turn-milling using analytical approach

机译:使用分析方法的车铣加工过程建模

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摘要

Turn-milling is relatively a new cutting process which combines two conventional manufacturing processes; turning and milling. This promising technology becomes an alternative to turning due to its advantages such as higher productivity and lower cutting temperatures, which provide longer tool life. Intermittent characteristics of turn-milling helps maintaining lower cutting temperatures and making high cutting speeds possible. In this study, the objective is to build a process model for turn-milling operation. Two possible methods used in turn-milling, orthogonal cutting and tangential cutting are considered. The developed model includes cutting geometry and force calculations. In addition, analytical expressions for circularity are presented as well. Finally, a comprehensive process model is obtained for both orthogonal and tangential turn milling operations. This model is used to compare different types of turn-milling operation and optimize the process. Experiments were conducted to verify the force model on a mill-turn CNC machine tool where the cutting forces were measured by a rotary dynamometer.
机译:车铣是一种相对较新的切削工艺,它结合了两个传统的制造工艺。车削和铣削。这项有前途的技术由于具有诸如更高的生产率和更低的切削温度等优点而成为车削的替代方法,从而延长了刀具寿命。车铣的间歇性特性有助于保持较低的切削温度并实现较高的切削速度。在这项研究中,目标是建立车铣加工的过程模型。考虑了车铣中使用的两种可能的方法:正交切削和切向切削。开发的模型包括切削几何形状和力计算。此外,还介绍了圆度的解析表达式。最后,获得了用于正交和切向车削铣削操作的综合过程模型。该模型用于比较不同类型的车铣操作并优化工艺。进行了实验,以验证铣削车床数控机床上的力模型,在其中通过旋转测功机测量切削力。

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