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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Low-consistency refining of mechanical pulp in the light of forces on fibres
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Low-consistency refining of mechanical pulp in the light of forces on fibres

机译:根据纤维上的力低密度精制机械浆

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摘要

The aim of this investigation was to find new approaches to evaluate the performance of low-consistency refiners. Data from a paper mill producing TMP from Norway spruce was used in order to find a possible way to calculate the power split between the zones in a TwinFlo refiner. An assumption of equal amount of fibres captured between overlapping bars was found successful in order to develop equations for the power split. The equations predicted equal power in both zones at equal disc gaps. The power was found to increase approximately linearly with decreasing disc gap over the range, 0.1-0.2 mm. The power split was essential to know for calculating refining intensities expressed as specific edge load and forces on fibres in the two zones. The reduction in fibre length was about 5% at 0.17 mm disc gap or at 0.03 N forces on fibres or at 0.7 J/m specific edge load. Disc gap, forces on fibres and specific edge load was found to predict fibre shortening approximately equally upon changes in power and flow rate through the refiner.
机译:这项调查的目的是找到评估低浓磨浆机性能的新方法。为了寻找一种可能的方法来计算TwinFlo精炼机区域之间的功率分配,使用了来自挪威云杉生产TMP的造纸厂的数据。为了建立用于功率分配的方程式,发现在重叠的条之间捕获相等数量的纤维的假设是成功的。这些方程式在相等的圆盘间隙处预测了两个区域的相等功率。发现在整个范围(0.1-0.2 mm)内,随着碟片间隙的减小,功率近似线性增加。功率分配对于了解计算精炼强度至关重要,精炼强度表示为特定边缘载荷和两个区域中纤维上的力。在0.17 mm的盘间隙或0.03 N的力或0.7 J / m的比边缘载荷下,纤维长度的减少约为5%。发现圆盘间隙,作用在纤维上的力和特定的边缘负载可预测功率和通过磨浆机的流量变化时纤维平均缩短。

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