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THE POTENTIAL OF MICROFIBRJLLATED CELLULOSE IN WATER-LAID AND FOAM-LAID PAPERS

机译:微自纤维纤维纤维素在水坑和泡沫铺设纸中的潜力

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Dewatering is an essential step in the processing of fibrous materials. The smaller the material size, the more challenging the dewatering process becomes. The dewatering properties of materials containing microfibrillated cellulose (MFC) are known to be especially challenging, particularly at high MFC contents. This study shows that the foam-laid forming technique enables more effective dewatering compared to water-laid forming and enables structures with both high bulk and sufficient strength. In the study, papers were formed using special water-laid and foam-laid sheet formers and MFC dosage was varied up to 15%. Papers containing high amounts of MFC were found to be unsuitable for water-laid forming due to poor dewatering properties resulting from higher fine material, i.e. MFC, content. Foam forming provided good dewatering characteristics even at high MFC contents. In addition to dewatering properties, the mechanical properties of the papers were also studied. According to the strength results, the strength potential of MFC-containing foam-laid papers was found to be greater with respect to z-directional strength than in-plane strength.
机译:脱水是加工纤维材料的重要步骤。材料尺寸越小,脱水过程变得越具挑战性。已知含有微纤维纤维素(MFC)的材料的脱水性能尤其具有挑战性,特别是在高MFC含量下。该研究表明,与水铺板成型相比,泡沫铺设的成型技术能够更有效地脱水,并使具有高块状和足够强度的结构。在该研究中,使用特殊的水铺和泡沫包蛋白剂形成纸,MFC剂量变化高达15%。发现含有大量MFC的纸张不适合由于较高的细物质,即MFC,含量导致的脱水性能差。泡沫形成即使在高MFC含量也提供了良好的脱水特性。除脱水性质外,还研究了纸的机械性能。根据强度的结果,发现含MFC的泡沫铺设纸的强度电位相对于Z方向强度而不是面内强度更大。

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