Dynamics of part motion on a linear vibratory feeder

Dynamics of part motion on a linear vibratory feeder
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DOI:
10.1177/09544062211012711
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发表时间:
2021-06
期刊:
Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science
影响因子:
--
通讯作者:
B. Balaji;Ramesh Gupta Burela;Ganeshthangaraj Ponniah
B. Balaji;Ramesh Gupta Burela;Ganeshthangaraj Ponniah
中科院分区:
其他
文献类型:
--
作者:
B. Balaji;Ramesh Gupta Burela;Ganeshthangaraj Ponniah

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直线振动给料机上曲面零件的运动在大批量生产中具有重要意义。在这篇文章中,输送表面或轨道是由一个双线性表面倾斜的所有轴与曲率变化的整个表面。建立了一个实验台,用于研究工件在进给面上的运动。推导了零件在曲面上的动力学方程,并对零件的轨迹进行了数值计算。数值模型与实验结果密切相关。基于控制参数的两个不同的制度-滑动和跳-提出,突出了他们的关系的频率和振幅的振动的给料机。
The motion of a part on a curved surface mounted upon a linear vibratory feeder is of great importance in mass production. In this article, the conveying surface or track is modelled by a bilinear surface inclined to all axes with the curvature varying throughout the surface. An experimental test rig is fabricated to study the part motion on the feeder surface. Dynamics of the part on the surface is derived and the path traced by the part is obtained numerically. The numeric model closely correlates with experimental results. Based on the control parameters two distinct regimes—slide and hop—are presented, highlighting their relation to frequency and amplitude of vibration of the feeder.