直纹面叶轮高效粗切削加工的刀具轨迹生成

Yuan Chen, G. Mei, Mingyang Lv, Jun Gao
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引用次数: 0

摘要

为了提高传统五轴数控加工中心离心叶轮的加工效率,本文提出了一种在五轴数控机床上高效的三轴同步数控加工方法,以取代五轴同步数控加工技术。在叶轮的雕刻表面及其投影图的基础上,将叶片的粗切表面划分为若干单元加工区域。为了支持各UMR同时进行三轴数控加工,对五轴机床的旋转角度和倾斜角度进行了预先计算和固定。在五轴机床上采用三轴同步控制的方法,为避免刀具与叶轮叶片之间的干涉和碰撞,生成了锯齿形的刀具轨迹。
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Tool path generation for efficient rough-cut machining of ruled surface impellers
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.
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