运动机构加减速曲线的性能与形状

Q3 Engineering
Ioana Enescu
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引用次数: 2

摘要

瞬态负载在数控机床和工业机器人的运动连杆中起着非常重要的作用。运动连杆机构可动元件的加减速直接参与到定位精度和路径误差的实现中。介绍了运动连杆机构加减速曲线的主要形状及其性能。给出了用于定位连杆机构以及用于仿形连杆机构的加速-减速曲线的形状。文中还给出了运动机构在直线加减速和指数加减速情况下对轮廓误差的影响程度。这些工作还就机床制造商在各种瞬态过程中选择曲线类型的方法提出了建议,以期获得高的动态性能。通常,建议考虑移动元件的惯性和施加的路径误差。通过知道加速度形状,机床设计者和建设者甚至可以从设计阶段就知道加速度最大的瞬态占空比区域。最大加速度施加了驱动伺服电机的冲击扭矩率,根据该冲击扭矩率确定运动连杆的尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performances and Shapes of Acceleration-deceleration Curve of Kinematical Linkages
The transient duty has a very important role within the kinematical linkages of the numerical control machine tools and industrial robots. The acceleration and deceleration of the movable element of the kinematical linkage participates directly to achieving the positioning accuracy and to the path error. This work presents the main shapes of the acceleration- deceleration curve of the kinematical linkage, as well as their performances. Shapes of the acceleration-deceleration curve are presented for positioning linkages as well as for contouring linkages. The extent of influence upon the contour error in case of the linear and exponential acceleration-deceleration of kinematical linkage is also presented. The works is also giving recommendations on the way of choosing the type of curve being used in case of various transient processes, by the machine tool builders, with a view to obtaining high dynamical performances. In general, the recommendations are considering the inertia of the mobile element and the imposed path error. By knowing the acceleration shape, the machine tool designer and builder can know, even from the design stage, the area of the transient duty where the acceleration is maximal. The maximum acceleration imposes the rate of the impulsion torque of the drive servomotor based on which the kinematical linkage is sized, in terms of its components.
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来源期刊
International Journal of Mechanics
International Journal of Mechanics Engineering-Computational Mechanics
CiteScore
1.60
自引率
0.00%
发文量
17
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