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首页> 外文期刊>繊維学会誌 >Mechanical and Dynamic Mechanical Properties of Sheets Made from Micro-Fibrillated Cellulose and Cationic Polyacrylamide
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Mechanical and Dynamic Mechanical Properties of Sheets Made from Micro-Fibrillated Cellulose and Cationic Polyacrylamide

机译:微纤纤维素和阳离子聚丙烯酰胺制成的片材的力学和动态力学性能

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摘要

A diluted micro-fibrillated cellulose (MFC) dispersion with cationic polyacrylamide (C-PAM) aq. Solution was casted and dried as a plausible model material of fiber-to-fiber bonds in paper containing C-PAM. Mechanical and dynamic mechanical properties of the MFC/C-PAM mixture sheets (MFC/C-PAM sheets) obtained were studied, comparing with those of papers containing C-PAM. The high density and Young's modulus of the MFC/C-PAM sheet, which was twice those of the paper without C-PAM, suggested higher consolidation and fully developed fibril-fibril bonds due to the quite small dimensions of MFC. A significant decrease in scattering coefficient of the MFC/C-PAM sheets accompanied by an increase of C-PAM content suggested that almost all of the C-PAM in the MFC/C-PAM sheets could locate surrounding fibril-fibril bonds. Tensile strength of MFC/C-PAM sheet was far larger than that of the paper without C-PAM. However, the strength increment of the MFC/C-PAM sheets with increasing C-PAM content was smaller than that expected from the difference of Young's modulus between MFC/C-PAM sheets and the papers containing C-PAM, partly because C-PAM itself is brittle. The dynamic mechanical properties of the MFC/C-PAM sheets were, on the whole, similar to those of the paper containing C-PAM, suggesting that the role of C-PAM on the mechanical property (or bonding) was minimal and the most of it was derived from fibril-fibril (hydrogen) bonding in the MFC/C-PAM sheets. Measurement of (dynamic) mechanical properties of the sheets consisted of MFC and various water soluble polymers could be used to evaluate the effects of the polymers on mechanical properties of papers when the polymers were used as dry strength agents.
机译:用阳离子聚丙烯酰胺(C-PAM)水溶液稀释的微纤化纤维素(MFC)分散液。将溶液浇铸并干燥,作为含有C-PAM的纸中可能存在的纤维间粘合模型材料。研究了获得的MFC / C-PAM混合纸(MFC / C-PAM纸)的机械和动态力学性能,并与含C-PAM的纸进行了比较。 MFC / C-PAM片材的高密度和杨氏模量是不含C-PAM的纸的两倍和高密度和杨氏模量,这表明由于MFC的尺寸非常小,因此固结力更高,并且纤维-原纤维键充分发展。 MFC / C-PAM片的散射系数显着降低,同时C-PAM含量增加,表明MFC / C-PAM片中几乎所有C-PAM都可以定位周围的原纤维-原纤维键。 MFC / C-PAM纸的拉伸强度远大于不使用C-PAM的纸的拉伸强度。但是,随着C-PAM含量的增加,MFC / C-PAM纸的强度增量小于MFC / C-PAM纸与含C-PAM的纸之间的杨氏模量差所预期的强度增量,部分原因是C-PAM本身很脆。总体而言,MFC / C-PAM纸的动态机械性能与包含C-PAM的纸张的动态机械性能相似,这表明C-PAM在机械性能(或粘合)上的作用是最小的,也是最大的它来自MFC / C-PAM片材中的原纤维-原纤维(氢)键。当将聚合物用作干强度剂时,由MFC和各种水溶性聚合物组成的片材的(动态)机械性能的测量可用于评估聚合物对纸的机械性能的影响。

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  • 来源
    《繊維学会誌》 |2014年第4期|182-185|共4页
  • 作者单位

    R&D Department, Arakawa Chemical Industries, LTD., 1-1-9, Tsurumi, Tsurumi-ku, Osaka 538-0053, Japan;

    Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan;

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