Establishing the Rotation Speed Variation Range Limits for Auto-Excitation of Self-Oscillating Grinding in a Tumbling Mill

K. Deineka, Yuriy Naumenko
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Abstract

The influence of the structure of a two-fraction polygranular feed of the chamber on the value of the drum rotation speed at auto-excitation of self-excited oscillations with a maximum swing is considered. Such a pulsating mode of movement of the charge is used in the self-oscillating process of grinding in a tumbling mill. The coarse fraction simulated the grinding bodies was steel bullets with a relative size ψdb=0.026. The fine fraction, simulated the particles of the crushed material, was a cement clinker with a relative particle size ψdm=0.00013. Variable factors of experimental studies were: the degree of filling the chamber in the state of rest κbr=0.25; 0.29; 0.33 and the degree of filling the gaps between the particles of the coarse fraction with particles of the fine fraction κmbgr=0.0625; 0.375; 0.6875; 1. The method of visual analysis of transient processes of self-oscillating modes of feed behavior in the cross section of the rotating drum chamber is applied. Measurements of the speed limits of the drum rotation were carried out with auto-excitation of self-oscillations of the filling. The magnitude of the self-oscillation swing was estimated by the increase in the difference between the maximum and minimum values of the filling dilatancy for one period of pulsations. An increase in the upper limit of the speed range ψω2 with a decrease in κbr and κmbgr was established. The growth rate of ψω2 increases at low values of κbr and κmbgr. Some increase in the lower limit of the ψω1 range with a decrease in κbr and κmbgr was revealed. An increase in the range of speeds of rotation was recorded at the maximum range of self-oscillations ψω1–ψω2 with a decrease in the connected interaction of the intra-mill filling. This coherent interaction is due to an increase in κbr and κmbgr. The value of the ψω1–ψω2 range varies from 1.01–1.03 at κbr=0.33 and κmbg=1 to 1.22–1.66 at κbr=0.25 and κmbgr=0.0625. The range gets its maximum value with fine and superfine grinding
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建立滚磨机自激振动磨机转速变化范围限值
考虑了两段多颗粒进料腔结构对最大摆幅自激振荡自激时滚筒转速值的影响。这种装料的脉动运动模式被用于滚磨机的自振荡磨矿过程中。粗段模拟的磨削体为相对尺寸为ψdb=0.026的钢弹。细粒级为水泥熟料,其相对粒度为:ψdm=0.00013。实验研究的可变因素为:静息状态下腔体填充度κbr=0.25;0.29;粗粒级颗粒与细粒级颗粒之间空隙的填充程度κmbgr=0.0625;0.375;0.6875;1. 采用可视化方法分析了旋转鼓腔截面进给行为自振荡模态的瞬态过程。滚筒旋转速度极限的测量是在灌装自振荡的自激作用下进行的。自振荡摆幅的大小是通过一个周期内填充膨胀的最大值和最小值之差的增加来估计的。速度范围的上限ψω2增大,κbr和κmbgr减小。在κbr和κmbgr较低时,ψω2的增长率增大。结果表明,随着κbr和κmbgr的降低,ψω1区间的下限有所增加。在自振荡ψω1 -ψω2的最大范围内,转速范围有所增加,而磨内填充的相互作用有所减少。这种相干相互作用是由于κbr和κmbgr的增加。在κbr=0.33和κmbg=1时,ψω1 -ψω2的取值范围为1.01-1.03;在κbr=0.25和κmbgr=0.0625时,ψω1 -ψω2的取值范围为1.22-1.66。该范围通过细磨和超细磨得到最大值
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