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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 >Experimental study on electrostatic charges and discharges inside storage silo during loading of polypropylene powders
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Experimental study on electrostatic charges and discharges inside storage silo during loading of polypropylene powders

机译:聚丙烯粉末加载贮藏过程中静电电荷和放电的实验研究

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摘要

As polymer powders have high resistivity, they can easily be charged due to the repeated collision and separation of particles along with particle-wall friction in a pneumatic conveying system. This study experimentally investigated the electrostatic charges and discharges inside a conical-cylindrical silo during the loading of polypropylene (PP, 2-3 mm) powders. The silo was continuously loaded with PP powders at 0.68 kg/s to a total mass of approximately 800 kg. To measure electrostatic charges of the PP powder being loaded into the silo, a Faraday cage with a cover was set at a distance of 50 mm from the center of the loading pipe inside the silo. To observe electrostatic discharges inside the silo, an image-intensifier unit was set on the windowpane of the silo roof. The results show that the charge-to-mass ratio of the loading PP powder remained at a constant value of approximately -12 mu C/kg. The ring-shaped light, which is the electrostatic discharge, appeared clearly at the center of the silo approximately 7 s after initial loading. The diameter of the ring-shaped light grew larger as time passed after loading. This was because the diameter of the accumulated PP powders increased in the silo during the running time, meaning that electrostatic discharge occurred between settled PP powders and the grounded metal silo wall. Additionally, the electrostatic discharges during the loading of powder in this study were clearly observed and classified into three kinds of discharges: brush, linear, or broad bulk surface discharges. (C) 2018 Published by Elsevier B.V.
机译:由于聚合物粉末具有高电阻率,因此由于重复碰撞和颗粒的分离以及气动输送系统中的颗粒摩擦,它们可以容易地充电。该研究在聚丙烯(PP,2-3mm)粉末的负载下,实验研究了静电电荷并在圆柱圆柱筒仓内排出。连续用PP粉末连续加载筒仓,以0.68kg / s为约800kg的总质量。为了测量装入筒仓的PP粉末的静电电荷,法拉第笼与盖子的距离距离筒仓内部的装载管中心50毫米。为了观察筒仓内的静电放电,在筒仓屋顶的窗口上设定了图像增强器单元。结果表明,加载PP粉末的电荷质量比保持在约-12μc/ kg的恒定值。作为静电放电的环形光在初始载荷后约7秒清楚地出现在筒仓的中心。随着装载后通过时,环形光的直径更大。这是因为在运行时间内堆积的PP粉末的直径增加,这意味着在沉降的PP粉末和接地金属筒仓之间发生静电放电。另外,清楚地观察到该研究中粉末负载期间的静电放电,并分为三种放电:刷,线性或宽块状表面放电。 (c)2018由elsevier b.v发布。

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