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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effects of vibration parameters and pipe insertion depth on the motion of particles induced by vertical vibration
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Effects of vibration parameters and pipe insertion depth on the motion of particles induced by vertical vibration

机译:振动参数和管道插入深度对垂直振动诱导粒子运动的影响

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摘要

Granular particles can be induced to move against gravity upwards through a pipe or tube that is partially inserted under the powder free surface while subject to vertical vibration. This offers a new approach for transporting bulk material. In this paper, the effects of both vibration parameters and insertion depth of a pipe on particle motion are experimentally studied. A minimum vibration amplitude (A) and frequency (f) are necessary for particle motion to occur. There is a monotonic increase of the final rise height of the powder (h(eq)) with increasing amplitude A. However, h(eq) exhibits a non-monotonic dependence on frequency, f. There is an optimum frequency at which particles climb highest, and any further increase of frequency leads to a diminishment of this upwards motion. A phase diagram of particle movement is presented which shows that different zones of motion exist. This unique finding suggests that the mechanism of particle movement is caused by the creation and filling of voids under the tube. Particles cannot move upwards when the pipe insertion depth, h(in) is 1.5 mm irrespective of how strong the supplied vibration is. In general, increasing h(in) can improve climbing, but this effect falls with increasing levels of insertion depth until a saturation level is reached. PACS number: 45.70.MG - granular flow (C) 2017 Elsevier B.V. All rights reserved.
机译:可以诱导粒状颗粒以通过管或管向上移动重力,管或管在粉末自由表面下部分插入,同时受到垂直振动。这提供了一种运输散装材料的新方法。本文研究了振动参数和管道插入深度对粒子运动的影响。颗粒运动需要最小振动幅度(A)和频率(F)。随着振幅A的增加,粉末的最终上升高度的单调增加(H(等式))增加了。然而,H(EQ)对频率F的非单调依赖性呈现。粒子爬升最佳频率,并且频率的任何进一步增加导致该向上运动的减小。提出了一种粒子运动的相图,其示出了存在不同的运动区域。这种独特的发现表明,粒子运动机制是由管下的空隙的产生和填充引起的。当管道插入深度H(in)为H(In)时,颗粒不能向上移动,而且无论提供的振动如何强度,都是无关紧要的。通常,增加H(In)可以提高攀爬,但这种效果随着插入深度的增加而下降,直到达到饱和水平。 PACS编号:45.70.mg - 粒状流量(c)2017 Elsevier B.v.保留所有权利。

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