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Experimental study on bounce of submicron agglomerates upon inertial impaction

机译:惯性冲击下亚微米团块反弹的实验研究

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This paper evaluated the break-up and bounce of iron oxides and copper agglomerates during inertial impaction. The results were compared with data acquired earlier with TiO2 agglomerates. It was found that the total mass-based bounce fraction of the iron oxide agglomerates did not increase monotonically with the impaction velocity. The reason behind this appeared to be the transition from non-fragmentation to fragmentation as the impaction velocity increased. The copper agglomerates were found to de-agglomerate but not bounce in these experiments. Different impaction surface materials were also examined to determine their effect on the impaction process, but only small variations were found in the bounce fractions or the size of the particles after bounce and deagglomeration.
机译:本文评估了惯性撞击过程中铁氧化物和铜附聚物的破裂和弹跳。将结果与较早使用TiO2附聚物获得的数据进行了比较。已发现氧化铁团块的基于质量的总弹跳分数不会随冲击速度单调增加。其背后的原因似乎是随着撞击速度的增加,从非碎片化转变为碎片化。在这些实验中,发现铜附聚物解聚但没有反弹。还检查了不同的撞击表面材料,以确定它们对撞击过程的影响,但是在反弹和解聚后的反弹分数或颗粒大小仅发现很小的变化。

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