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Parametric Investigation on Dynamics of Toner and Carrier Particles in Electrophotographic Two-Component Magnetic Brush Development System Using Direct Observation Technique and Numerical Simulation

机译:基于直接观察技术和数值模拟的电子照相两成分磁刷显影系统中碳粉和载体颗粒动力学的参数研究

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The author has studied the dynamics of toner and carrier particles in a two-component magnetic brush development system used for electrophotography using a direct observation technique and numerical simulation method. We have manufactured a mock-up apparatus consisting of a pseudo-photoreceptor drum, development sleeve, and stationary magnetic roller. The image was created on an insulated film electrode pasted onto the drum. The behavior of the toner and carrier particles has been observed directly using a high-speed microscope camera and calculated using 3D distinct element method that includes the calculation of the magnetic interaction force and the transient electric conduction in carrier chains. Parameters for the experiment and calculation were the diameters of toner and carrier particles, toner/carrier concentration, development gap, development voltage, speed ratio between the photoreceptor drum and development sleeve, waveform and magnitude of superposed ac development voltage, and distribution of magnetic field created by the magnetic roller. Optimum conditions for realizing high image quality printing have been proposed considering all the various factors together.
机译:作者使用直接观察技术和数值模拟方法研究了用于电子照相的两组分磁刷显影系统中的调色剂和载体颗粒的动力学。我们已经制造出一种由伪感光鼓,显影套筒和固定磁辊组成的实体模型设备。图像是在粘贴到感光鼓上的绝缘膜电极上产生的。调色剂和载体颗粒的行为已使用高速显微镜相机直接观察到,并使用3D离散元素方法进行了计算,该方法包括计算载体链中的磁性相互作用力和瞬态导电性。实验和计算的参数是墨粉和载体颗粒的直径,墨粉/载体浓度,显影间隙,显影电压,感光鼓和显影套筒之间的速度比,叠加的交流显影电压的波形和大小以及磁场分布由磁辊产生。考虑到所有各种因素,已经提出了实现高图像质量打印的最佳条件。

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