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Friction forces and mechanical dust generation in an iron ore pellet bed subjected to varied applied loads

机译:承受不同施加载荷的铁矿石球床中的摩擦力和机械粉尘产生

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摘要

Iron ore pellets degrade and generate dust during transportation and handling as well as during the iron making process. This leads to material losses and effects the process efficiency in a negative manner. In order, to reduce the generation of dust it is important to understand the influence of process parameters on the dust formation. An experimental setup was used to measure the dust generation and friction forces caused by abrasion of iron ore pellets in a closed pack bed. A varied load of 1 to 3 kg was applied on the pellet bed but at a constant air flow rate to capture the airborne dust particles. It was observed that an increase of ~67% is observed in the friction and the dust generation in the bed as the applied load increased from 1 to 3 kg. Moreover, the evaluation of the particle size distribution of the generated dust showed that a higher friction in the pellet bed can lead to an increased amount of airborne particles. Moreover, it has been shown that in an air flow the morphology and the orientation of dust particles can influence the air velocity required to transport the particles upwards.   
机译:铁矿石球团在运输和处理以及炼铁过程中会降解并产生粉尘。这导致材料损失并以负面的方式影响处理效率。为了减少粉尘的产生,重要的是要了解工艺参数对粉尘形成的影响。实验装置用于测量密闭包装床中铁矿石颗粒磨损引起的粉尘产生和摩擦力。将1到3 kg的变化载荷施加到颗粒床上,但以恒定的空气流速捕获空气中的尘埃颗粒。观察到,随着施加的载荷从1 kg增加到3 kg,在床中的摩擦和粉尘产生方面增加了〜67%。此外,对产生的粉尘的粒度分布的评估表明,颗粒床中较高的摩擦力会导致空气中颗粒的数量增加。而且,已经表明,在气流中,灰尘颗粒的形态和取向会影响向上输送颗粒所需的空气速度。

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