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On the mechanisms behind the ability of CMC to enhance paper strength

机译:关于CMC增强纸张强度的能力背后的机制

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The attachment of CMC to pulp is known to have a strong impact on the tensile strength properties. The mechanisms behind the strength-enhancing ability of the CMC have been investigated by studying the effect of surface carboxymethylation on some basic fibre and sheet properties. Standard methods were used for the strength evaluation, and the relative bonded area was determined from both light-scattering measurements and BET-analysis. The effect of CMC on the shear bond strength was calculated using Page's equation. The attachment of CMC was shown to increase the shape factor and reduce the number of kinks per fibre, which is beneficial for the tensile strength. Surface carboxymethylation also increased the relative bonded area, but on a small-scale structural level detectable only using BET-analysis and not by the scattering coefficient. The sheet density was not affected by the treatment. CMC attachment also increased the shear bond strength. In order to use Page's equation for this evaluation, the relative bonded area had to be determined by BET-analysis. The positive effect of CMC on sheet formation also contributed to an increase in tensile strength.
机译:已知CMC在纸浆上的附着对拉伸强度特性有很大的影响。通过研究表面羧甲基化对某些基本纤维和片材性能的影响,研究了CMC增强强度的机制。使用标准方法进行强度评估​​,并通过光散射测量和BET分析确定相对结合面积。使用Page方程计算CMC对剪切粘结强度的影响。结果表明,CMC的附着可增加形状因子并减少每根纤维的扭结数,这对于拉伸强度是有利的。表面羧甲基化也增加了相对键合面积,但是在小规模结构水平上只能使用BET分析检测到,而不能通过散射系数检测到。片材密度不受处理的影响。 CMC附件还增加了剪切粘结强度。为了使用佩奇方程进行此评估,必须通过BET分析确定相对键合面积。 CMC对薄板形成的积极影响也有助于提高抗张强度。

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