首页> 外文会议>SME annual meeting exhibit;CMA National Western Mining conference >PILOT STUDY ON THE INFLUENCE OF THE ECCENTRIC SPEED ON CONE CRUSHER PRODUCTION AND OPERATION
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PILOT STUDY ON THE INFLUENCE OF THE ECCENTRIC SPEED ON CONE CRUSHER PRODUCTION AND OPERATION

机译:离心速度对圆锥破碎机生产和运行的影响的初步研究

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There are many different machine setup parameters and variables that affect the production of cone crushers in a mineral processing plant. One of these variables is the eccentric speed at which the cone gyrates. In June 2012, pilot tests were conducted on a 200 hp high speed cone crusher to determine the production and operating conditions over a wide spectrum of eccentric speed. Every plant will have variations in the ore characteristics and feed rates throughout the life of the mine, and at times throughout a single shift of operation, which result in non-optimal use of the crushing energy and inconsistent process control. For high speed cone crushers, the crusher will exhibit a different capacity, power required, and discharge size distribution as the speed ranges over the design limits of the machine. This study documents the measured variation in production and energy efficiency both when the crusher was ran at full capacity as well as when the feed to the crusher was not sufficient to run at full capacity. Overall, the results match theory and the capacity and power fluctuated by 25% and 17%, respectively, over the speed range when operated full while there was an overall trend of slightly coarser discharge size distribution as the speed decreased. The results with the fixed feed rate were more telling, as the crushers had 4-14% higher production when making a theoretical minus 12.5 mm product when operating at the optimal-speed as compared to the worst speed in the 'typical' speed range for this application. Secondary analysis of the fixed tonnage testing also showed that the power draw was more consistent with lower magnitude spikes at the higher speeds (higher cavity level), as on average the standard deviation of the power draw increased from 7% to 18% and the peak power spikes from 20% to 48% over the speed range tested. The findings lay groundwork for more efficient plant design. Varying the speed of the crusher can be used to tune the crusher speed during commissioning, adapt to changing ore conditions over long periods of time, or be used as a dynamic input into an advanced control system. Each action above would serve to make the crusher(s) more productive and more energy efficient, and would also have mechanical benefits for the machine.
机译:有许多不同的机器设置参数和变量会影响矿物加工厂中圆锥破碎机的生产。这些变量之一是圆锥旋转的偏心速度。 2012年6月,在200 hp的高速圆锥破碎机上进行了试验测试,以确定在各种偏心速度下的生产和运行条件。每家工厂在整个矿山的生命周期内,有时甚至在单次运行班次中,矿石特性和进给速度都会发生变化,这会导致压碎能量的使用不理想以及过程控制不一致。对于高速圆锥破碎机,随着速度超出机器的设计极限,破碎机将显示出不同的容量,所需的功率和排料尺寸分布。这项研究记录了当破碎机满负荷运行时以及到破碎机的进料不足以满负荷运行时测得的生产和能源效率变化。总的来说,结果与理论相符,满负荷运行时,容量和功率在整个速度范围内分别波动了25%和17%,而总体趋势是随着速度的降低,排放尺寸分布会略微变粗。固定进给速度下的结果更具说服力,因为在“最佳”速度范围内,以最佳速度运行时,与理论上最差的速度相比,当以理论速度运行时,理论产量为负12.5毫米的破碎机的产量为4-14%。这个应用程序。固定吨位测试的二次分析还显示,在较高速度(较高腔级)下,功率消耗与较低幅度的尖峰更加一致,因为平均而言,功率消耗的标准偏差从7%增加到18%,并且峰值在测试的速度范围内,功率峰值从20%增至48%。这些发现为更有效的工厂设计奠定了基础。改变破碎机的速度可用于调试期间调整破碎机的速度,适应长期变化的矿石条件,或用作高级控制系统的动态输入。上面的每个动作都将使破碎机的生产率更高,能源效率更高,并且还为机器带来机械效益。

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