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A Stick Motion Compensation System with a Dynamic Model

机译:动态模型的棒运动补偿系统

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摘要

This paper deals with a stick motion compensation system. Stick motion is trajectory error that happens just after a quadrant change in circular motion on NC machine tools. Recently cylindrical machining with an end mill is often executed instead of boring machining with a bore tool. That is why the accuracy with end mill machining is becoming important. Stick motion extremely damages the accuracy and the quality of the circular parts or free form surfaces on workpieces. In the conventional compensation system, tuning parameters for each combination of radius and feed rate is needed. This research proposes a new stick motion compensation system. The new system has a dynamic model that simulates the friction. The simulated friction consists of two components. One is spring resistance in proportion to a reverse distance from a quadrant change. The other is viscous damping friction in proportion to velocity. The system can compensate stick motions suitably for wide range conditions of radii and feed rate.
机译:本文讨论了摇杆运动补偿系统。棒运动是轨迹误差,在数控机床上圆周运动象限变化后立即发生。最近,通常用立铣刀进行圆柱加工,而不是用镗孔工具进行镗加工。因此,立铣刀加工的精度变得越来越重要。粘滞运动极大地损害了工件上圆形零件或自由曲面的精度和质量。在常规补偿系统中,需要针对半径和进给率的每种组合调整参数。这项研究提出了一种新的摇杆运动补偿系统。新系统具有模拟摩擦的动态模型。模拟的摩擦包括两个部分。一种是弹簧阻力,与到象限变化的反向距离成比例。另一个是与速度成比例的粘性阻尼摩擦。该系统可以针对大范围的半径和进给率条件适当地补偿棒运动。

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