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Doctor Process of Toner Layer in Non-Magnetic Single-Component Development System in Electrophotography

机译:电子照相非磁性单组分显影系统中墨粉层的刮除工艺

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In a non-magnetic single-component development system in electrophotography, formation of a thin and uniform toner layer on the development roller is important for obtaining high image quality. We conducted experimental and numerical investigations to clarify the dynamics of toner particles in this process. Two approaches were adopted for the investigation. One is experimental and the other is numerical simulation using the distinct element method. We manufactured a mock-up apparatus consisting of a supply roller, a development roller, and a doctor blade for forming a thin toner layer on the development roller. The thickness, surface roughness, and charge density of the formed toner layer were measured after the doctoring process. It was clarified that the thickness of the toner layer was increased, but the charge density was decreased, by increasing the applied voltage and rotational speed. These findings were confirmed by direct observation of the toner motion in the doctoring area with a high-speed microscope camera. Numerical calculations performed using an improved distinct element method revealed that the elastic energy applied to the toner particles, which is an index of toner degradation, was increased by increasing the stiffness and pressing force of the doctor blade, but decreased when the curvature of the blade tip was large. The present experimental and numerical results can be used to improve non-magnetic single-component development system in electrophotography.
机译:在电子照相术的非磁性单组分显影系统中,在显影辊上形成薄而均匀的调色剂层对于获得高图像质量很重要。我们进行了实验和数值研究,以阐明此过程中墨粉颗粒的动力学。调查采用两种方法。一个是实验性的,另一个是使用独特元素法的数值模拟。我们制造了一个样机设备,该设备由一个供纸辊,一个显影辊和一个刮墨刀组成,用于在显影辊上形成薄薄的墨粉层。在刮涂过程之后测量形成的调色剂层的厚度,表面粗糙度和电荷密度。明确了通过增加施加电压和旋转速度,调色剂层的厚度增加,但是电荷密度降低。通过使用高速显微镜相机直接观察刮墨区域中的墨粉运动,证实了这些发现。使用改进的独特元素法进行的数值计算表明,施加到墨粉颗粒上的弹性能量(作为墨粉降解的指标)通过增加刮墨刀的刚度和按压力而增加,但是当刮刀的曲率减小时,弹性能减小提示很大。本实验和数值结果可用于改进电子照相中的非磁性单组分显影系统。

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