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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Quantitative investigation on force chain lengths during high velocity compaction of ferrous powder
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Quantitative investigation on force chain lengths during high velocity compaction of ferrous powder

机译:黑色粉末高速压实期间力链长度的定量研究

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摘要

Force chains play an important role in linking the macro- and micro-mechanisms of powder in high velocity compaction (HVC). Force chain lengths, as an important quantitative characteristic, can describe the geometry of force chains. In this study, force chain lengths and their relation to other force chain characteristics in HVC were investigated by discrete element method. Results revealed that force chain length decreased and it can be related to the densification process of ferrous powder in HVC. Moreover, long force chains extended from top to bottom and may play a major role in supporting load, although the percentage of long force chains was low. Probability density functions of force chain lengths further showed the exponential decay. The proportion of short force chains increased and the proportion of long force chains decreased. Long force chains had high strength and can be aligned to the direction of the external load, but force chain lengths did not have clear relation to straightness. These relations were confirmed by Pearson correlation coefficients.
机译:力链在将粉末和微机制的高速压实(HVC)中的宏观和微机制联系起来,发挥着重要作用。作为重要的定量特征,力链长度可以描述力链的几何形状。在该研究中,通过离散的元件方法研究了力链长度及其与HVC中的其他力链特性的关系。结果表明,力链长度降低,它可以与HVC中含铁粉末的致密化方法有关。此外,长力链从顶部到底部延伸,并且可能在支撑载荷中发挥重要作用,尽管长力链的百分比低。力链长度的概率密度函数进一步显示指数衰减。短力链的比例增加,长力链的比例下降。长力链具有高强度,可以与外部负荷的方向对齐,但力链长度与直线度没有明显的关系。 Pearson相关系数证实了这些关系。

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