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Media/Toner Interactions in Laser Printing

机译:激光打印中的介质/墨粉相互作用

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摘要

According to CAP Ventures, monochrome Print-on-Demand (POD) book publishing is currently a $10 bn industry growing at a rate of 10% each year. Such POD and other electro-photographic applications demand an exceptionally high degree of print resolution as well as good toner adhesion. Controlled particle size distribution of the toners, higher print speeds, and other advances in color laser printing are also placing special demands on the media used for printing. This paper attempts to separate the effects of three different fuser roll cover materials, which impact the nip dynamics, to the print resolution and uniformity as well as the toner adhesion to the substrate. The toner adhesion was characterized by Scanning Electron Micrographs (SEM's). A model has been developed to estimate nip residence time for the fuser roll covers. As shown in the model, this parameter can be affected both by roll cover design as well as print speed. In this limited study where the print speed was held constant and the nip residence time changed only due to roll cover design, it was shown to correlate well with print resolution as measured by image analysis techniques.
机译:根据CAP Ventures的研究,单色按需印刷(POD)图书出版目前是一个价值100亿美元的行业,并且每年以10%的速度增长。这样的POD和其他电子照相应用需要极高的打印分辨率以及良好的墨粉附着力。调色剂粒径分布的控制,更高的打印速度以及彩色激光打印的其他进步也对打印介质提出了特殊要求。本文试图将三种不同的定影辊覆盖材料的影响(影响压区动态)对打印分辨率和均匀性以及墨粉与基材的粘附力分开。通过扫描电子显微照片(SEM)表征调色剂的粘附性。已经开发出一种模型来估计定影辊套的辊隙停留时间。如模型中所示,该参数可能会受到卷筒封面设计以及打印速度的影响。在这项有限的研究中,打印速度保持恒定,并且压区停留时间仅由于卷筒封面设计而改变,这表明它与通过图像分析技术测得的打印分辨率具有很好的相关性。

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