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Discrete element modeling of the transient heat transfer and toner fusing process in the Xerographic printing of coated papers

机译:涂布纸静电印刷中瞬态传热和墨粉定影过程的离散元素建模

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摘要

In this study, a computer model based on discrete element method is employed to simulate the unsteady state heat transfer from the fuser roll to the toner and coating layer during the Xerography printing of coated papers. The model coating layers consisted of randomly arranged spherical pigment and latex particles with commercially relevant size distributions. Effects of coating characteristics, toner size, multiple toner layers, toner melting energy, toner thermal conductivity, coating layer thermal conductivity, and fuser roll temperature and pressure were investigated. Iso-thermal contours of fusing time were generated to demonstrate the relative importance of different fusing conditions and toner properties. Simulation results showed that temperature variation highly depended on the toner size, toner melting energy and the fuser roll temperature. Moreover, simultaneous coupling of the compressive stress and heat transfer indicated that the pressure exerted by the fuser roll did not significantly affect the rate of heat transfer.
机译:在这项研究中,采用了基于离散元素方法的计算机模型来模拟在静电复印印刷纸张的过程中,从定影辊到调色剂和涂层的非稳态热传递。模型涂层由随机排列的球形颜料和具有商业相关尺寸分布的乳胶颗粒组成。研究了涂布特性,墨粉尺寸,多个墨粉层,墨粉熔化能量,墨粉热导率,涂层热导率以及定影辊温度和压力的影响。生成了定影时间的等温线,以证明不同定影条件和墨粉特性的相对重要性。仿真结果表明,温度变化在很大程度上取决于墨粉尺寸,墨粉熔化能量和定影辊温度。而且,压缩应力和热传递的同时耦合表明,定影辊施加的压力并未显着影响热传递速率。

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