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The absorption mechanism of aqueous and solvent inks into synthetic nonwoven fabrics

机译:水性和溶剂型油墨对合成无纺布的吸收机理

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摘要

To obtain high quality printing result with aqueous inks, it is important to understand the mechanisms of ink absorption and setting on various substrates. The final position of ink pigments determines the ink density and the resolution of the printed product. Recently, it has become desirable to develop higher quality printing results on nonwoven fabrics and synthetic fiber sheets.rnAbsorption rates of aqueous and solvent inks into nonwoven fabrics were characterized with a Bristow absorption wheel. Several nonwoven fabrics, made with polyvinyl alcohol fibers or polypropylene fibers, were tested with aqueous and solvent inks. A model based on Darcy's law was applied to predict the ink absorption rate into the nonwoven fabrics. The model links the void fraction, pore size, contact angle and the Darcy permeability coefficients to the absorption rate. The results showed a high correlation between the experimental data and the predicted results for most combinations of substrates and inks, but in a few cases, the absorption rates were different than expected.rnThe micro-scale distribution of aqueous and solvent inks on the nonwoven fabrics was evaluated with a confocal laser scanning microscope (CLSM) in order to characterize the deposition uniformity of the nonwoven fabrics. A clear difference of micro-scale distributions between aqueous and solvent inks could be obtained by CLSM.
机译:为了获得水性墨水的高质量打印效果,重要的是要了解各种基材上墨水吸收和固化的机理。油墨颜料的最终位置决定了油墨密度和印刷产品的分辨率。近来,在非织造织物和合成纤维片材上获得更高质量的印刷结果已成为人们的期望。用布里斯托吸收轮表征水性和溶剂型墨水在非织造织物中的吸收速率。用水性和溶剂型油墨测试了几种由聚乙烯醇纤维或聚丙烯纤维制成的无纺布。应用基于达西定律的模型来预测非织造织物中的油墨吸收率。该模型将孔隙率,孔径,接触角和达西渗透系数与吸收速率联系起来。结果表明,大多数基材和油墨组合的实验数据与预测结果之间具有高度相关性,但在少数情况下,吸收率与预期不同.rn无纺布上水性和溶剂型油墨的微观分布用共聚焦激光扫描显微镜(CLSM)进行评估,以表征非织造织物的沉积均匀性。通过CLSM可以得到水性墨水和溶剂墨水之间的微观分布的明显差异。

著录项

  • 来源
    《Digital Fabrication 2008》|2008年|549-552|共4页
  • 会议地点 PittsburghPA(US);PittsburghPA(US)
  • 作者单位

    Research Institute, National Printing Bureau of Japan, 6-4-20 Sakawa, Odawara, Kanagawa 256-0816, JAPAN;

    Department of Chemical and Biological Engineering, University of Maine, 5737Jenness Hall, Orono, Maine 04469-5737, USA;

    Department of Chemical and Biological Engineering, University of Maine, 5737Jenness Hall, Orono, Maine 04469-5737, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 信息处理(信息加工);
  • 关键词

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