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Optimal Synthesis of Disk Cam Mechanisms with a Roller Follower Considering Cam Size Minimization and Rotational Balancing

机译:考虑凸轮尺寸最小化和旋转平衡的滚子跟随器的磁盘凸轮机构的最佳合成

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This paper presents the optimal synthesis of disk cam mechanisms with a roller follower considering cam size minimization and rotational balancing. With the aid of parametric vector equations of the cam profile, geometric properties of the disk cam are derived. The concept of a disk cam with an inner arc-slot hole and a pair of added circular counterweights is then proposed to practice rotational balancing for the cam shaft. Optimization models to find the minimized cam size and to achieve rotational balancing of the cam shaft with a minimized polar moment of area are established. Two case studies for the optimal synthesis of disk cams with either an offset translating roller follower or an oscillating roller follower are demonstrated. For each case, both the optimized cam size and polar moment of area can be considerably reduced. Hence, this study provides a feasible methodology to synthesize disk cam mechanisms with a roller follower.
机译:本文介绍了考虑凸轮尺寸最小化和旋转平衡的滚子跟随器的磁盘凸轮机构的最佳合成。借助凸轮轮廓的参数矢量方程,导出盘凸轮的几何属性。然后提出了带内弧孔的磁盘凸轮的概念和一对添加的圆形配重,以练习凸轮轴的旋转平衡。确定最小化的凸轮尺寸和实现凸轮轴的旋转平衡,建立了最小化区域的旋转平衡。对具有偏移平移滚子从动件或振荡滚子从动件的最佳磁盘凸轮的最佳合成的两种情况研究。对于每种情况,可以显着降低优化的凸轮尺寸和区域的极性时刻。因此,本研究提供了一种可行的方法,可以用辊子跟随器合成盘式凸轮机构。

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