了解在不同含水量下手纸的湿撕裂强度

January 2021 Pub Date : 2021-02-01 DOI:10.32964/tj20.1.29
Adele Panek, J. Panek, James Faught, P. Hart
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引用次数: 0

摘要

一项实验室研究进行了观察水分含量对湿撕裂强度在手纸的影响。使用三种不同的润湿技术在不同的水分水平下生成湿撕裂(elmendorf型)数据,从TAPPI标准条件(干燥)到超过60%的水分含量(饱和)。未漂白的硬木和软木纤维来自大规模硫酸盐纸浆生产。用谷式打湿机对软木纤维进行精炼,以降低游离度。手抄是由硬木和软木以及精制软木混合制成的,没有添加湿端化学物质。从测试中获得的克力撕裂数据与基本重量索引,并与含水量和干燥度绘制。随着手纸含水率的增加,湿撕裂强度也增加,达到临界最大值。这标志着图上的一个过渡点,在这里,超过临界含水率水平,撕裂强度开始随着含水率的增加而线性下降。这种图案在由硬木和软木以及100%精制软木混合制成的手纸上重复出现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding wet tear strength at varying moisture content in handsheets
A laboratory study was conducted looking at the effects of moisture content on wet tear strength in handsheets. Three different wetting techniques were used to generate the wet tear (Elmendorf-type) data at varying moisture levels, from TAPPI standard conditions (dry) to over 60% moisture content (saturated). Unbleached hard-wood and softwood fiber from full-scale kraft pulp production were used. The softwood fiber was refined using a Valley beater to reduce freeness. Handsheets were made with a blend of hardwood and softwood and with refined softwood, without the addition of wet-end chemistry. The resulting grams-force tear data obtained from the test was indexed with basis weight and plotted versus both moisture content and dryness. As moisture content levels in the handsheets increased, the wet tear strength also increased, reaching a critical maximum point. This marked a transition point on the graph where, beyond a critical moisture content level, the tear strength began to decline linearly as moisture increased. This pattern was repeated in handsheets made from a blend of hardwood and softwood and from 100% refined softwood.
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