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Micro-sizing degree as a property of ink-jet media printability

机译:缩微程度是喷墨介质可印刷性的特性

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As well as supreme image quality realized by specialized paper, industrial and office printing markets demand uncoated general papers compatible with both offset printing and nonimpact printing. The present work aims at clarifying the behavior of a micro-liquid droplet of water-based ink-jet inks or simply water absorbed into uncoated paper. In the experiment, laboratory handsheets were prepared by adding alkyl ketene dimmer (AKD) as a sizing agent at different levels of water repellency; none, 0.05, 0.10 and 0.20 % on dry pulp mass. The landing action and the absorption into paper of micro-droplets of water ejected from an ink-jet head were recorded by the microscopic high-speed video camera system every millisecond. The period of time between the landing and the completion of absorption was defined as "micro-sizing degree". The micro-sizing degree was approximately 2 to 3 ms up to 0.10 % AKD addition. It is lower than that of commercial silica-coated ink-jet papers which was approximately 8 ms although silica-coated papers are known to absorb water very quickly. However, the micro-sizing degree was approximately 45 ms for the handsheets of 0.20 % AKD addition. This result implies that the water-repellency by AKD is distributed over fiber surfaces so homogeneously that micro-water droplets of diameters of as small as a few micrometers are absorbed stably at similar rates.
机译:除了专用纸可以实现的最高图像质量外,工业和办公印刷市场还要求与胶版印刷和非胶版印刷兼容的非涂层普通纸。本工作旨在阐明微细液滴的水基喷墨油墨的行为,或只是将水吸收到未涂布纸中的行为。在实验中,通过在不同的憎水性下添加烷基烯酮二聚体(AKD)作为上浆剂来制备实验室手抄纸。纸浆质量的0.05%,0.10%和0.20%。每隔毫秒用高速显微镜照相系统记录从喷墨头喷出的微滴的着陆作用和对纸的吸收。从着陆到吸收完成之间的时间段定义为“微细化程度”。最多添加0.10%AKD时,微细度约为2到3毫秒。尽管已知二氧化硅涂覆的纸吸收水非常快,但它低于商业二氧化硅涂覆的喷墨纸的约8ms。但是,对于添加了0.20%AKD的手抄纸,微细化程度约为45毫秒。该结果暗示AKD的疏水性均匀地分布在纤维表面上,使得直径小至几微米的微水滴以相似的速率稳定地被吸收。

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