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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Defibration mechanisms and energy consumption in the grinding zone - a lab scale equipment and method to evaluate groundwood pulping tools
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Defibration mechanisms and energy consumption in the grinding zone - a lab scale equipment and method to evaluate groundwood pulping tools

机译:磨削区的除纤机理和能耗-实验室规模的设备和评估磨木浆工具的方法

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摘要

Groundwood pulping is a process that employs large machines, making them difficult to use in research. Lab scale grinders exist, but even though they are smaller, the sizes of the grinding stones or segments make them cumbersome to exchange and tailor. This study presents a method and an apparatus for investigating the detailed mechanisms and the energy requirements behind the fibre separation process. A well-defined grinding tool was used at three different temperatures to demonstrate that the equipment can differentiate levels of energy consumption and defibration rates, confirming the well-known fact that a higher temperature facilitates defibration. It is also shown how the equipment can be used to study the influence of grinding parameters, exemplified by the effect of temperature on the way fibres are separated and the character of the produced fibres. A key feature of the equipment is the use and evaluation of small grinding surfaces, more readily designed, produced, evaluated and studied. This reduces both the cost and time necessary for testing and evaluating. At the same time, a technique to produce well defined grinding surfaces was employed, which is necessary for repeatability and robust testing, not achievable with traditional grinding stones.
机译:磨木浆制浆过程需要使用大型机器,因此很难在研究中使用。存在实验室规模的磨床,但是即使较小,磨石或磨块的尺寸也使它们难以更换和定制。这项研究提出了一种方法和一种设备,用于研究纤维分离过程背后的详细机理和能量需求。在三个不同的温度下使用了定义明确的研磨工具,证明该设备可以区分能耗和解纤率,从而证实了众所周知的事实,即较高的温度会促进解纤。还显示了该设备如何用于研究磨削参数的影响,例如温度对纤维分离方式和所生产纤维特性的影响。该设备的关键特征是使用和评估较小的磨削表面,这些表面更易于设计,生产,评估和研究。这减少了测试和评估所需的成本和时间。同时,采用了产生轮廓分明的磨削表面的技术,这对于重复性和坚固的测试是必不可少的,这是传统磨石无法实现的。

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