Numerical analysis of grinding power consumption of a vertical planetary mill

Xue-di HAO , Dong-mei ZHU , Zhi-rui BIAN , Xin WANG
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引用次数: 2

Abstract

Planetary wheel rolling on a coal-bed was simplified as rigid wheel rolling on the coal-bed with a rigid base when a Vertical planetary mill (VPM) is running. Based on our analysis, we conclude that the Bekker formulation for computing rolling resistance is not applicable to calculate directly the rolling resistance of the wheel. According to the principle of the Bekker apparatus, pressure-sinkage curves were obtained by tests on a piece of mono-axial consolidation apparatus used in soil-mechanics. The deformation modulus of the coal-bed was calculated using elastic mechanics. A finite element model of the planetary wheel coal-bed was built up by the use of a rigid and a Drucker-Prager material model in LS-DYNA. According to the simulation results, the wheel rolling resistance, the grinding power consumption and the motor power of the mill were calculated and the mistake in the initial design of the mill was modified. The simulation results agree well with the results of the semi-industrial tests.

立式行星磨机磨削功率消耗的数值分析
将立式行星磨运行时的行星轮在煤层上的滚动简化为刚性底座的刚性轮在煤层上的滚动。通过分析得出,Bekker滚动阻力计算公式不适用于直接计算车轮的滚动阻力。根据贝克仪原理,通过对一件土力学单轴固结仪的试验,得到了压沉曲线。用弹性力学方法计算了煤层的变形模量。采用LS-DYNA软件中的刚性和Drucker-Prager材料模型,建立了行星轮煤层的有限元模型。根据仿真结果,对磨机的车轮滚动阻力、磨机的磨削功耗和磨机的电机功率进行了计算,对磨机初始设计中的错误进行了修正。仿真结果与半工业试验结果吻合较好。
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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