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Statics and Dynamics of Carrier Particles in Two-Component Magnetic Development System in Electrophotography

机译:电子照相两组分磁性显影系统中载流子的静态和动力学

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摘要

The authors used a simple model and a prototype machine to study statics and dynamics of a magnetic brush in a two-component development system in electrophotography. In the model experiment, the authors measured the normal and tangential forces of the brush formed from a chain of magnetic carrier particles when it comes in contact with the photoreceptor to clarify the relationship between the tangential friction force and the diameter of the carrier particles, magnetic flux density, and the length of the brush. The tangential friction force increased with the magnetic flux density and decreased with an increase in the length of the brush; however, the total force was unaffected by the diameter of the carrier particles. On the other hand, numerical calculations performed using an improved distinct element method revealed that although the total force was not affected by the diameter of the carrier particles, the individual differential force acting on the magnetic particles of the chain was small, and the density of the carrier particles that come in contact with the photoreceptor drum was high when the size of the particles was small. In the investigation carried out using the prototype machine, it was found that the magnetic brush formed in the development area is inclined in a direction parallel to the magnetic field and that the chains are crushed by the photoreceptor drum. Although the total pressure applied on the photoreceptor was almost independent of the diameter of the carrier particles, the differential force exerted by individual chains is small and distributes dense when the size of the particles is small; on the other hand, it is large and distributes rough when the size of the particles is large as predicted by the model investigation. This result suggests that small carrier particles are advantageous in preventing any disturbances in the images developed on the photoreceptor. The effects of the development gap and the thickness of the layer of supplied carrier particles have also been evaluated.
机译:作者使用一个简单的模型和一个原型机来研究电子照相两组件开发系统中磁刷的静态和动态。在模型实验中,作者测量了由磁性载体颗粒链形成的电刷与感光体接触时所产生的法向力和切向力,以阐明切向摩擦力与载体颗粒直径,磁性之间的关系。助焊剂密度和刷子的长度。切向摩擦力随着磁通密度的增加而增加,并且随着电刷长度的增加而减小;然而,总力不受载体颗粒直径的影响。另一方面,使用改进的离散元方法进行的数值计算表明,尽管总力不受载体颗粒直径的影响,但作用在链磁性颗粒上的单个微分力很小,且密度不高。当颗粒尺寸小时,与感光鼓接触的载体颗粒较高。在使用原型机进行的研究中,发现在显影区域中形成的磁刷在平行于磁场的方向上倾斜,并且链条被感光鼓压碎。尽管施加在感光体上的总压力几乎与载体颗粒的直径无关,但是由单个链施加的差力较小,并且当颗粒尺寸较小时分布较密;另一方面,如模型研究所预测的那样,当颗粒尺寸较大时,它较大并且分布粗糙。该结果表明,小的载体颗粒有利于防止在感光体上显影的图像中的任何干扰。还已经评估了显影间隙和所提供的载体颗粒层的厚度的影响。

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  • 来源
    《Journal of Imaging Science and Technology》 |2009年第6期|060201.1-060201.10|共10页
  • 作者单位

    Department of Applied Mechanics and Aerospace Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan;

    Department of Applied Mechanics and Aerospace Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan;

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