Electric pulse method of processing cullet

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
A. Khassenov, B. Nussupbekov, D. Karabekova, G. Bulkairova, B.U. Shashubai, M. Bolatbekova
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Abstract

The article considers the issue of obtaining a recycling resource during the processing cullet, which harms the environment. During the preparation of raw materials in the household waste recycling stages, the material is crushed to the right size. This is implemented in mills based on various methods of destruction. In this regard, analyses of the currently existing types of mechanical mills were carried out and their disadvantages were investigated. To solve glass recycling problem, this study presents the results of processing cullet by the electric pulse method. We provide a description of operation principle of the experimental setup and the design of the working chamber for processing the material under study. In this technology, the processing cullet is carried out with an increase in the discharge voltage of the storage from 25 kV to 35 kV, the capacitor capacity from 0,25µF to 1 µF, the number of pulse discharges from 100 to 600. By using the electric pulse method particles cullet with an initial fraction of 2 mm and 5 mm were crushed from 1 mm to 0.1 mm. The dependence of the output of the final product on the electrical parameters of the installation and the diameter of the obtained glass powder were received. The results of the grinding raw materials with the formation of pulsed electric discharges in a liquid medium allowed assessing the degree of grinding of the material. According to the obtained research data, optimal parameters of cullet grinding were established.
电脉冲法处理碎玻璃
本文考虑了在处理碎玻璃过程中获得可回收资源的问题,这会危害环境。在生活垃圾回收阶段的原材料制备过程中,材料被粉碎至合适的尺寸。这是在基于各种销毁方法的工厂中实现的。在这方面,对目前存在的机械磨机类型进行了分析,并调查了它们的缺点。为了解决玻璃的回收问题,本文介绍了用电脉冲法处理碎玻璃的结果。我们介绍了实验装置的工作原理以及用于处理所研究材料的工作室的设计。在该技术中,在存储器的放电电压从25 kV增加到35 kV、电容器容量从0.25µF增加到1µF、脉冲放电次数从100增加到600的情况下进行处理。通过使用电脉冲法,将初始粒径为2mm和5mm的碎玻璃颗粒从1mm粉碎至0.1mm。得到了最终产品的产量与设备的电气参数和获得的玻璃粉末的直径的关系。在液体介质中形成脉冲放电的研磨原材料的结果允许评估材料的研磨程度。根据获得的研究数据,确定了碎玻璃磨削的最佳参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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50.00%
发文量
32
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