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Vibration and Noise Induced by Electrostatic Force on a Contact Charger Roller of Electrophotography

机译:电子照相术的接触充电辊上的静电力引起的振动和噪声

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摘要

Electromechanical dynamics of a contact charging subsystem of electrophotography were investigated to clarify fundamental characteristics of mechanical vibration and acoustic noise induced by electrostatic force on a contact charger roller. The following conclusions were deduced from modeling and experiments. (1) Alternating electrostatic force is yielded in the vicinity of the nip between the charger roller and a photoreceptor drum because ac voltage applied between the roller and the drum induces a high alternating electrostatic field in the vicinity of the nip. Noise is caused mainly by the resonance vibration of a cartridge cover that contains the roller and the photoreceptor drum. Noise due to gas discharge and pipe resonance of the drum is minor. (2) The main frequency of the electrostatic force is twice that of the ac applied voltage. The magnitude of the electrostatic force is large under high ac applied voltage operation. Therefore the resonant frequency of the cartridge cover should be designed to be significantly different from twice that of the ac voltage frequency, and it is preferable to set the ac voltage as low as possible.
机译:对电子照相术的接触充电子系统的机电动力学进行了研究,以弄清由接触充电器辊上的静电力引起的机械振动和声噪声的基本特征。从建模和实验中得出以下结论。 (1)在充电辊和感光鼓之间的辊隙附近产生交变静电力,这是因为施加在辊和感光鼓之间的交流电压在辊隙附近引起高交变静电场。噪音主要是由包含滚筒和感光鼓的墨盒盖的共振引起的。气体排放和滚筒的管道共振引起的噪音很小。 (2)静电力的主频率是交流施加电压的主频率的两倍。在高交流施加电压下,静电力的大小很大。因此,盒盖的共振频率应被设计为与交流电压频率的两倍明显不同,并且优选将交流电压设置得尽可能低。

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