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Paper properties of TMP and CTMP handsheets from spruce, as affected by the solids content from pressing

机译:云杉TMP和CTMP手抄纸的纸张性能,受压制固体含量的影响

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This paper discusses how the properties of dry handsheets from two different mechanical pulps and one che-mithermomechanical pulp and their respective long fibre fractions depend on the level of dryness to which the sheets are pressed at high temperature. Sheets were pressed and dried to different dryness levels at 400 kPa and 93℃ in a modified Rapid Kothen dryer. Prior to testing of the physical properties, the sheets were dried without pressure at room temperature to full dryness and kept in a conditioning room. This was performed with the aim of evaluating the consolidation and development of final strength properties with respect to dryness after a press section in a paper machine. The most interesting finding from these trials was that the increase in density and strength were far from linear with increased press dryness, especially for the long fibre fractions when looking at the Z-strength development. There was a distinct inflection of the curve when the sheets reached a press dryness level of some 50%. The most important dryness interval for internal strength development was found between 50 and 80%. The fact that most paper and board machines press the sheet to only some 50% dryness, before feeding it into the drying section, implies that much of the inherent strength potential of mechanical pulps may be unexploited. Further research on pressing to higher dryness levels will in the future be continued at FSCN at Mid Sweden University.
机译:本文讨论了由两种不同的机械纸浆和一种化学半机械纸浆制成的干手抄纸的性能以及它们各自的长纤维组分如何取决于在高温下压制手抄纸的干燥程度。在改良的Rapid Kothen干燥机中,将片材压制并在400 kPa和93℃下干燥至不同的干燥水平。在测试物理性能之前,将片材在室温下在无压力的情况下干燥至完全干燥,并保存在调理室中。这样做是为了评估造纸机压榨部后相对于干度的最终强度性能的巩固和发展。这些试验中最有趣的发现是,随着压榨干燥度的增加,密度和强度的增加远不是线性的,特别是当观察Z强度的发展时,对于长纤维而言。当片材达到约50%的印刷干燥度时,曲线出现明显的弯曲。发现内部强度发展的最重要的干燥间隔为50%至80%。大多数纸张和纸板机在将纸张送入干燥区之前将纸张压至仅干燥约50%的事实,这意味着机械纸浆的许多固有强度潜力可能尚未开发。将来,中瑞典大学的FSCN将继续进行有关将其压榨至更高干燥水平的进一步研究。

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