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Pilot study on the influence of the eccentric speed on cone crusher production and operation

机译:偏心速度对圆锥破碎机生产经营影响的初步研究

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摘要

There are many different machine design parameters and variables that affect the production of cone crushers in a mineral processing plant. One of these variables is the speed at which the cone gyrates. In June 2012, pilot tests were conducted to determine the production and operating conditions over a wide spectrum of speeds. Mining operations will have variations in the ore characteristics and feed rates that result in nonoptimal use of the crushing energy and inconsistent process control. This study documents the measured variation in production and energy efficiency with two operating modes. Overall, the results match the theory, and the capacity and power fluctuated by 25% and 17%, respectively, when operated at full capacity, with an overall trend of slightly coarser discharge size distribution as the speed decreased. Using a fixed feed rate, the crushers had 4-14% higher production when operating at the optimal speed. Secondary analysis showed that the power draw consistency and magnitude of power spikes could also be improved by optimizing the cone speed. Varying the speed of the crusher can be used to tune the crusher 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, more energy efficient, improve process control and would also have mechanical benefits for the machine.
机译:有许多不同的机器设计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速度。 2012年6月,进行了试点测试以确定各种速度下的生产和运行条件。采矿作业的矿石特性和进料速度会发生变化,导致压碎能量的使用不理想,并且过程控制不一致。这项研究记录了在两种操作模式下测得的生产和能源效率变化。总体而言,结果与理论相符,在满负荷运行时,容量和功率分别波动25%和17%,随着速度的降低,总体上排放尺寸分布会略微变粗。使用固定的进料速度,以最佳速度运行时,压碎机的产量提高了4-14%。二次分析表明,通过优化锥体速度,也可以改善功率消耗的一致性和功率尖峰的大小。改变破碎机的速度可用于调试期间的破碎机调整,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,改善过程控制,并且还为机器带来机械效益。

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