Mechanical modification of softwood pulp fibers using a novel lightweight vertical bar plate

April 2021 Pub Date : 2021-05-01 DOI:10.32964/tj20.4.241
H. Gu, Byung-Gul Min, Ji-Young Lee, See-Han Park, Min-Seok Lee, Chang-Young Lee, Chul-Hwan Kim
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引用次数: 2

Abstract

Refiner plates made using sand casting have a draft angle, which results in a trapezoidal bar shape. These trapezoidal bar plates have a limited throughput compared to the vertical bar plates, and eventually the edges of the bars become dull, resulting in longer time to reach the target freeness and shorter service life. The new light-weight refiner plate with a bar insertion method into a plate base was developed by selecting an aluminium-based alloy as the plate base material and a stainless steel alloy with high wear resistance as the bar material. The light-weight plate with sharp bar edges was very effective in reducing refining energy by reaching the target freeness faster than the sand-cast bar plate. Finally, the lightweight sharp bar plate, which weighed only about half the weight of the cast bar plate, was expected to significantly contribute to easy replacement, improved paper quality, and larger throughput without excessive loss of fiber length.
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用新型轻质竖杆板对软木纸浆纤维进行机械改性
用砂型铸造的精炼板有一个牵伸角,这导致了一个梯形棒的形状。这些梯形棒板与垂直棒板相比,吞吐量有限,最终棒的边缘变得暗淡,导致达到目标自由度的时间更长,使用寿命更短。以铝基合金为板基材料,以高耐磨性的不锈钢合金为板基材料,研制了一种新型轻量化板基嵌条法精炼板。具有锋利棒材边缘的轻质板比砂铸棒材更快地达到目标自由度,在降低精炼能量方面非常有效。最后,重量仅为铸棒板重量的一半的轻质锐棒板,有望大大有助于易于更换,改善纸张质量,并在不过度损失纤维长度的情况下提高吞吐量。
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