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Evaluating the Printability Characteristics of the Paper Board by Using Nano Fibers Based Coatings

机译:通过使用基于纳米纤维的涂层来评估纸板的可印刷性特性

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In this work, the nanofibers were prepared both from bagasse and wood pulp by enzymetic reaction using endoglucanase enzyme by masuko grinder in neutral medium. The prepared nanofibers were subjected for evaluation to identify the nano characteristic using practical size analyzer. The coating solutions were prepared in different weight % of nanofibers and TiCh nanoparticles separately with the binder carboxyl methyl cellulose. Then, it was coated on to the selected uncoated paper board of 180.0 GSM. The distribution of nanofibers and Ti02 nanoparticles coated on the paper board were evaluated using scanning electron microscope (SEM). The porosity and smoothness of the selected board before and after coating were measured using Bendtsen Automatic Densometer. The decrease in porosity values of the samples of the coated nanofiber sample is approximately 15%. The tensile strength of the coated paper board was measured using Universal Testing Machine (UTM) and a 15% increase in values compared to the selected uncoated paper board were observed. Then, the coated paper board samples were printed using IGT printability tester to evaluate the pick velocity. The pick values of the coated samples were found to be very good even at very high speed compared to the uncoated paper board sample.
机译:在这项工作中,通过在中性介质中通过Masuko研磨机使用内切葡聚糖酶来制备纳米纤维。进行制备的纳米纤维进行评价以使用实用尺寸分析仪鉴定纳米特性。用粘合剂羧基甲基纤维素分别以不同重量%的纳米纤维和TICH纳米颗粒制备涂布溶液。然后,将其涂在180.0GSM的选定的未涂层纸板上。使用扫描电子显微镜(SEM)评估涂布在纸板上的纳米纤维和TiO 2纳米颗粒的分布。使用Bendtsen自动刺激仪测量涂层前后所选板的孔隙率和平滑度。涂覆的纳米纤维样品样品的孔隙率值的降低约为15%。使用通用试验机(UTM)测量涂覆纸板的拉伸强度,观察到与所选未涂覆的纸板相比的值增加15%。然后,使用IGT可印刷性测试仪打印涂覆的纸板样品以评估拾取速度。与未涂覆的纸板样品相比,发现涂覆样品的拾取值甚至非常高。

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