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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Refining systems for sack paper pulp: Part I HC refining under pressurised conditions and subsuequent LC refining
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Refining systems for sack paper pulp: Part I HC refining under pressurised conditions and subsuequent LC refining

机译:麻袋纸浆的精制系统:第一部分加压条件下的HC精制以及随后的LC精制

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摘要

Unbleached kraft pulp for sack paper is usually refined in a high consistency process followed by low consistency refining in order to achieve the desired paper properties, such as a high strain at break and high tensile energy absorption at low airflow resistance. In this study, conventional atmospheric high consistency refining is compared to pressurised high consistency refining after preheating to 125℃ and 175℃. After the high consistency refining stage, the pulp samples were refined in a low consistency process in a laboratory Escher-Wyss refiner. The results show that the highest levels of tensile energy absorption and strain at break were achieved with curled and kinked fibres refined in a pressurised refiner at 175℃ at a relatively low refining energy input, before the low consistency refining stage. These results were obtained at low airflow resistance, which is advantageous for sack paper. The disadvantage of the pressurised high consistency refining process is a loss in tensile strength. Paper properties were evaluated on freely dried as well as ISO sheets.
机译:用于麻袋纸的未漂白牛皮纸浆通常在高稠度过程中进行精制,然后再进行低稠度精制,以实现所需的纸张性能,例如高断裂应变和在低气流阻力下的高拉伸能吸收。在这项研究中,将常规的大气高稠度精制与预热至125℃和175℃后的加压高稠度精制进行比较。在高浓度精制阶段之后,纸浆样品在实验室Escher-Wyss精制机中以低浓度工艺进行精制。结果表明,在低稠度精炼阶段之前,在相对较低的精炼能量输入下,在175℃的加压精制机中精制的卷曲和扭结纤维可实现最高水平的拉伸能量吸收和断裂应变。这些结果是在低气流阻力下获得的,这对于麻袋纸是有利的。加压的高稠度精制过程的缺点是抗张强度的损失。在自由干燥的纸张和ISO纸张上评估纸张性能。

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