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Highly Porous Paper Loading with Microfibrillated Cellulose by Spray Coating on Wet Substrates

机译:通过在湿基材上喷涂而使微纤维纤维素高度多孔地装载纸

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摘要

A laboratory bench for the spray coating of aqueous slurries on wet substrates and the subsequent water removal by vacuum filtration was used to load porous papers with microfibrillated cellulose (MFC). Spray coating provided an accurate control of the coating basis weight and, when increasing the MFC load, homogeneous films progressively formed on the substrate with negligible loss of MFC. Even in the presence of porous papers, the MFC coating remained confined on the surface of the substrate, at first forming irregular pots and then, as the MFC basis weight exceeded 6 g/m2, a continuous film. The formation of a MFC film induced a drop in the air permeability and a sharp increase in the tensile properties. Also, after film formation, the further increase of the MFC coating basis weight led to a linear increase of the tensile properties that, as for laminates, were predicted by the rule of mixtures
机译:用于在湿基质上喷涂水性浆料并随后通过真空过滤除去水的实验室工作台用于向多孔纸中加载微纤化纤维素(MFC)。喷涂可精确控制涂料的单位面积重量,当增加MFC负荷时,可在基材上逐渐形成均匀的膜,而MFC的损失可忽略不计。即使在存在多孔纸的情况下,MFC涂层也仍然限制在基材表面上,首先形成不规则的罐子,然后,当MFC单位面积重量超过6 g / m2时,形成连续的薄膜。 MFC膜的形成引起透气性的下降和拉伸性能的急剧增加。同样,在成膜后,MFC涂层基重的进一步增加导致拉伸性能的线性增加,这对于层压板而言,是根据混合物的规律预测的

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