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Structural Design and Experimental Analysis of a Piezoelectric Vibration Feeder with a Magnetic Spring

机译:磁弹簧压电振动给料机的结构设计与实验分析

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A piezoelectric vibration feeder with a magnetic spring is discussed in this paper. The feeder can keep resonance frequency relatively stable under changing loading. Through the analysis on the working principle and magnetic spring stiffness characteristic of this feeder, the dynamic model was established and the relationship among system resonance frequency, loading and magnetic spring stiffness was obtained. The analysis showed that, as the loading changed, the magnetic spring stiffness changed accordingly, which maintained a trend of stability in the system resonance frequency. A prototype was made for the experiment, and the relationship among the loading, magnetic spring axial clearance and system resonance frequency was obtained. The result showed that, when the loading changes, the resonance frequency and feeding speed tended to be stable, which matched the theoretical analysis. Through comparison with a traditional vibration feeder, within nominal loading, this new feeder has more stable resonance frequency and feeding speed.
机译:本文讨论了带有磁性弹簧的压电振动给料机。馈线可以在负载变化时保持谐振频率相对稳定。通过对该馈线的工作原理和磁弹簧刚度特性的分析,建立了动力学模型,得到了系统共振频率,载荷与磁弹簧刚度之间的关系。分析表明,随着载荷的变化,磁弹簧的刚度也随之变化,从而保持了系统共振频率的稳定趋势。制作了实验样机,得到了载荷,弹簧弹簧轴向游隙与系统共振频率之间的关系。结果表明,当载荷变化时,共振频率和进料速度趋于稳定,与理论分析相吻合。与传统的振动给料机相比,在额定负载范围内,该新型给料机具有更稳定的共振频率和给料速度。

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