СОВЕРШЕНСТВОВАНИЕ ВИБРАЦИОННЫХ ПИТАТЕЛЕЙ-ГРОХОТОВ ДЛЯ ГОРНО-МЕТАЛЛУРГИЧЕСКОЙ ПРОМЫШЛЕННОСТИ

Q3 Materials Science
Василий Иванович Ляшенко, В. З. Дятчин, Всеволод Петрович Франчук
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引用次数: 1

Abstract

The main scientific and practical results of the improvement of  vibrating feeders-screens for mining and metallurgical industry are  presented on the basis of dynamic calculation of the vibrating feederscreen with two differently directed self-balancing vibrators. Methods  of theoretical generalizations are described using mathematical statistics, physical and mathematical modeling, computation and feasibility studies, laboratory and full-scale experimental studies, industrial  tests in the conditions of operating enterprises using standard and new  methods. Mathematical modeling and calculation of the parameters of  a vibrating feeder of the PVG type are proposed. It is recommended  when choosing dynamic parameters of the feeder, to use the vibration  transmission coefficient, which is taken within the limits (1.5  –  3.5)g,   and in heavy loading modes, is up to 5g. It is shown that during preparation of breeze coke in the crushing body, from 10 to 50  % of fine  material is received from its bunker with a particle size of 0  –  3  mm,  which is additionally re-milled, reducing the quality of coke. A vibrating feeder-screen with a spatial oscillation of the working element will  increase the efficiency of screening of the material by 15  –  20  % and  will improve the self-cleaning of the screen. The driving forces of the  exciters are directed at different angles of 15 and 45° to the screening surfaceand are attached from each other at a distance equal to half  width of the box, i.e. 600  mm. It is established that in the resonance  mode at a constant amplitude with increasing frequency the coefficient  of the vibro-displacement regime increases according to a quadratic  dependence, at a working frequency of 100 rad/s it also increases from  the loading edge of the feeder to the unloading and from one side to  another, the value of which varies within 2.62  –  2.84.
改善高山冶金工业的振动鼓风机
通过对采用两种不同方向自平衡振动器的给料振动筛进行动态计算,给出了对矿用冶金工业给料振动筛进行改进的主要科学和实用结果。运用数理统计、物理和数学建模、计算和可行性研究、实验室和全尺寸实验研究、采用标准方法和新方法在经营企业条件下进行工业试验来描述理论推广的方法。提出了PVG型振动给料机的数学建模和参数计算方法。在选择给料器的动态参数时,建议使用振动传递系数,该系数在(1.5 - 3.5)g范围内,在重载模式下,最高可达5g。研究表明,在破碎体制备风焦过程中,10 ~ 50%的细粒物料从其料仓中接收,粒度为0 ~ 3mm,这些细粒物料被再磨,降低了焦炭的质量。具有工作元件空间振荡的振动给料筛,可使物料的筛分效率提高15 - 20%,并可提高筛的自洁性。激振器的驱动力分别以15°和45°的不同角度指向筛面,并以等于箱体半宽度的距离(即600mm)相互连接。结果表明,在恒幅谐振模式下,随着频率的增加,振动-位移区系数呈二次相关关系增大,在100 rad/s工作频率下,从给料机的加载边缘到卸料边缘,从一侧到另一侧,其值在2.62 ~ 2.84之间变化。
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
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
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0.00%
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81
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