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Simulation of inking system based on elastohydrodynamic lubrication

机译:基于弹性流体动力润滑的上墨系统仿真

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the inking system is one of the important components of an offset printing machine and an inking system with good performances is the necessary condition for high quality printing.In this paper,the Reynolds equation for ink transfer was deducted on the basis of the elastohydrodynamic lubrication theory and the relation model between parameters of the roller,speed,pressure and ink thickness in gap of rollers was established by applying the Hertz contact theory,so as to obtain the minimum film thickness equation in gaps of rollers.The influences of roller speed,pressure and size on ink thickness in gaps of rollers were analyzed.In addition,the ink transfer model was modified under the condition of considering retention of ink in gaps of rollers by using Roland700 as the object and the influences of printing speed on inking characteristics were analyzed by applying the method of computer simulation.The results showed that the longer was the inking stabilization time of the system was,the higher the printing speed was.
机译:上墨系统是胶印机的重要组成部分之一,性能良好的上墨系统是高质量印刷的必要条件。并利用赫兹接触理论建立了辊参数,速度,压力与辊间隙油墨厚度之间的关系模型,从而得出辊间隙的最小膜厚方程。此外,以Roland700为对象,在考虑到油墨在辊隙中的滞留性的条件下,修改了油墨转移模型,并分析了印刷速度对着墨特性的影响。结果表明,系统着墨稳定时间越长,油墨的稳定时间越长。打印速度更高。

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