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Efficient rough-cut plan for machining an impeller with a 5-axis NC machine

机译:用五轴数控机床加工叶轮的有效粗加工方案

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摘要

This study presents an efficient, rough-cut path plan for the 5-axis, numerically controlled (NC) machining of an impeller. The hub and blade surfaces of the impeller are customarily machined by a 5-axis NC machine. Much of the machining time of the impeller is, however, consumed in the rough cutting where unnecessary stock materials are removed. Simultaneous, 5-axis, rough machining requires a considerably longer time than 3-axis machining because all the five axes have to be controlled at the same time at almost all cutter location (CL) points. Based on the characteristic curves of a blank and a finished impeller, a rough machining area can be partitioned into several unit machining regions (UMRs) by using the characteristic curves of an impeller and their projection graphs. Then, an UMR is machined by means of the simultaneous, 3-axis control of a 5-axis machine instead of simultaneous, 5-axis control. In each UMR, the rotating and tilting axes of a machine bed are fixed in advance to perform 3-axis machining. Finally, rough-cut CL data is generated based on the 3-axis machining plan at each UMR while avoiding the collision between the tool and impeller blades. An illustrative example is shown for a prototype impeller, and the final tool paths generated by the proposed method are verified by using the cutting simulation function of Vericut. Experimental results show that the proposed rough-cut plan has significantly reduced the machining time when compared to the conventional, 5-axis-control-based, rough machining.
机译:这项研究为叶轮的5轴数控(NC)加工提出了有效的粗加工路径计划。叶轮的轮毂和叶片表面通常由5轴数控机床加工。然而,叶轮的大部分加工时间在粗加工中被消耗掉,在粗加工中,多余的原料被去除了。同时进行5轴粗加工比3轴加工需要更长的时间,因为几乎在所有刀具位置(CL)点都必须同时控制所有5轴。根据毛坯和成品叶轮的特征曲线,可以通过使用叶轮的特征曲线及其投影图将粗加工区域划分为几个单元加工区域(UMR)。然后,通过5轴机床的同时3轴控制而不是5轴同时控制来加工UMR。在每个UMR中,机床的旋转轴和倾斜轴都预先固定,以执行3轴加工。最后,根据每个UMR的3轴加工计划生成粗加工的CL数据,同时避免工具和叶轮叶片之间发生碰撞。给出了一个原型叶轮的示例,并使用Vericut的切削仿真功能验证了由所提出的方法产生的最终刀具路径。实验结果表明,与基于5轴控制的常规粗加工相比,提出的粗加工计划显着减少了加工时间。

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