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Wear process during granular flow transportation in conveyor transfer

机译:输送机输送过程中颗粒流输送过程中的磨损过程

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This paper presents a numerical study of the wear process during granular transportation in conveyor transfer systems. Discrete element method was used to calculate the interaction force between solid particles and devices which experience wear on the pipes and belts. The moving receiving belt was involved to investigate to the influence of receiving belt speed on the wear process. To investigate the relationship between the flow behavior and the wear process, the effects of particle size, feed rate, belt speed and chute structure on the granular velocity distributions and the impact force on the pipes and belts were investigated. It was revealed that the wear on the receiving belt and transfer pipe is more serious with the increase of feed rate and the decrease of particle diameter. The decrease of the receiving belt speed makes the granular layer thicker, which reduces wear on the belt. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文对输送机传输系统中颗粒运输过程中的磨损过程进行了数值研究。离散元法用于计算固体颗粒与受到管道和皮带磨损的设备之间的相互作用力。运动中的接收皮带用于调查接收皮带速度对磨损过程的影响。为了研究流动行为与磨损过程之间的关系,研究了粒径,进料速度,皮带速度和溜槽结构对颗粒速度分布的影响以及对管道和皮带的冲击力。结果表明,随着进料速度的增加和粒径的减小,接收带和输送管的磨损更加严重。接收皮带速度的降低会使颗粒层变厚,从而减少了皮带的磨损。 (C)2015 Elsevier B.V.保留所有权利。

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