THE PHENOMENON OF INK DUSTING TAKING INTO ACCOUNT THE SURFACE ROUGHNESS OFFSET PRINTING PLATE

I. Khalilov, E. Aliyev, E. Huseynzade
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Abstract

The paper investigates the influence of the mechanics of a friction printing pair on ink dusting in the printing process, taking into account the surface roughness of the printing plate. The aim of the study is to determine the influence of the surface roughness of the printing plate on the deformation of the deckle, as well as on the value of the total force in the area of the printed contact, the relative gear ratio and the relative speed of sliding of the deckle along the surface of the cylinder, which directly affects the dusting of the ink. It was found that when studying the mechanics of a printed pair, the influence of the microgeometry of the contacting surfaces on the parameters under study was not taken into account. The influence of microprotrusions of the surface roughness of the printing plate on the deformation of the deckle in the area of the printed contact has been substantiated and established. To determine the introduction of surface roughness irregularities, a discrete roughness model is used, presented as a set of identical spherical segments. To determine the influence of the surface roughness of the printing plate on the friction force arising in the contact zone, a calculation scheme is proposed that differs from analogs. A method is developed for calculating the parameters of a friction pair in the printing process, taking into account the roughness. Expressions are obtained for determining the total moment of tangential friction forces in the sliding sections when spherical irregularities are introduced. According to the proposed technique, the corresponding graphical dependences of the gear ratio on different parameters of the friction printed pair are shown. The advantages of this study in comparison with analogs are that at certain values of the parameters of the friction pair, taking into account the surface roughness of the printing plate, also at known values of the mechanical characteristics and thickness of the deckle, it is possible to determine the change in the length of the deckle of a given composition, which is necessary in the printing process. The proposed calculation method, which is carried out without taking into account the pressure in the printed contact zone, allows predicting the quality of printed impressions and the amount of ink involved in the formation of ink dusting, as well as correctly adjusting the printing press before the printing process.
油墨的起尘现象要考虑到胶版印版的表面粗糙度
在考虑印版表面粗糙度的情况下,研究了摩擦印刷副在印刷过程中对油墨粉尘的影响。研究的目的是确定印版表面粗糙度对脱屑变形的影响,以及对印刷接触区域的总力值、相对齿轮比和脱屑沿滚筒表面滑动的相对速度的影响,这直接影响油墨的粉尘。研究发现,在研究印刷副的力学时,没有考虑接触面的微观几何形状对所研究参数的影响。证实并建立了印版表面粗糙度的微突起对印刷接触区凹痕变形的影响。为了确定表面粗糙度不规则性的引入,使用了一个离散的粗糙度模型,它被呈现为一组相同的球面段。为了确定印版表面粗糙度对接触区摩擦力的影响,提出了一种不同于类似物的计算方案。提出了一种考虑粗糙度的印刷摩擦副参数计算方法。得到了当引入球面不规则性时,滑动截面切向摩擦力总力矩的表达式。根据所提出的技术,给出了相应的齿轮传动比与摩擦印刷副不同参数的关系图。与类似方法相比,本研究的优点是,在摩擦副参数的一定值下,考虑到印版的表面粗糙度,并且在已知的机械特性和脱褶厚度的值下,可以确定给定成分的脱褶长度的变化,这在印刷过程中是必要的。所提出的计算方法在没有考虑印刷接触区的压力的情况下进行,可以预测印刷印痕的质量和形成油墨粉尘所涉及的油墨量,以及在印刷过程之前正确调整印刷机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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