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Tool path generation for efficient rough-cut machining of ruled surface impellers

机译:用于高效粗加工加工的工具路径生成裁定表面叶轮

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To improve the machining efficiency for the conventional 5-axis NC machining center of a centrifugal impeller, this article proposes an efficient simultaneous 3-axis NC machining approach on 5-axis NC machine instead of simultaneous 5-axis NC machining technology. On the basis of the sculptured surfaces of an impeller and its projection graphs, a rough-cut surface of the blades is separated into some unit machining regions (UMRs). The angles of the rotate and tilt of a 5-axis machine bed are calculated and immobilized in advance to support the simultaneous 3-axis NC machining of each UMR. The tool paths with the zigzag shape are generated to avoid interference and impact between the cutter and the blades of impeller based on the simultaneous 3-axis control approach on 5-axis machine bed.
机译:为了提高离心叶轮的传统5轴NC加工中心的加工效率,本文提出了在5轴NC机器上的高效同步3轴NC加工方法而不是同时的5轴NC加工技术。基于叶轮的雕刻表面及其投影图,叶片的粗糙表面被分成一些单元加工区域(UMR)。预先计算和固定5轴机床的旋转和倾斜的角度以支撑每个UMR的同时3轴NC加工。产生具有锯齿形状的刀具路径,以避免基于5轴机床上的同时的3轴控制方法在叶轮的刀具和叶片之间的干扰和冲击。

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