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Chamber Optimization for Comprehensive Improvement of Cone Crusher Productivity and Product Quality

机译:腔室优化,全面提高圆锥破碎机生产率和产品质量

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摘要

This study aims to analyze the impact of key structural parameters such as the bottom angle of the mantle, the length of the parallel zone, and the eccentric angle on the productivity and product quality of the cone crusher and optimize the crushing chamber to improve the crusher performance. The amount of ore in the blockage layer was calculated by analyzing the movement state of the ore in the crushing chamber. Considering the amount of ore uplift further, the traditional mathematical model of crusher productivity was revised. Then, a mathematical model for dual-objective optimization of productivity and product quality of cone crusher was established. Furthermore, taking the existing C900 cone crusher as the research object, the influence of key parameters on the performance of the crusher was researched. And the optimal values of key structural parameters were obtained. Finally, based on the iron ore coarsely crushed by the gyratory crusher, the dynamic characteristics of the C900 cone crusher were simulated by using the discrete element method (DEM), and the simulation results are basically consistent with the numerical analysis results. Results show that considering the amount of ore uplift in the blockage layer, the revised mathematical model of crusher productivity can better characterize the actual productivity. The bottom angle of the mantle and the length of the parallel zone are within the range of 50 degrees-60 degrees and 140 mm-190 mm, respectively. The productivity shows a positive correlation with the bottom angle and a negative correlation with the length of the parallel zone. But the dependence of product quality on the angle and the length is just the opposite. The eccentric angle is within the range of 1.4 degrees-2 degrees and its decrease has a negative effect on the productivity and product quality.
机译:本研究旨在分析地幔底角、平行带长度、偏心角等关键结构参数对圆锥破碎机生产率和产品质量的影响,优化破碎腔,提高破碎机性能。通过分析矿石在破碎腔中的运动状态,计算出堵塞层中的矿石量。进一步考虑矿石隆起量,对破碎机生产率的传统数学模型进行了修正。然后,建立了圆锥破碎机生产率和产品质量双目标优化的数学模型。此外,以现有C900圆锥破碎机为研究对象,研究了关键参数对破碎机性能的影响。并得到关键结构参数的最优值。最后,基于旋回破碎机粗碎铁矿石,采用离散元法(DEM)对C900圆锥破碎机的动态特性进行了模拟,模拟结果与数值分析结果基本一致。结果表明:考虑堵塞层中矿石隆起量,修正后的破碎机产能数学模型能够较好地表征实际产能;地幔的底角和平行带的长度分别在50度-60度和140毫米-190毫米的范围内。生产率与底角呈正相关,与平行带长度呈负相关。但产品质量对角度和长度的依赖恰恰相反。偏心角在1.4度-2度范围内,偏心角的减小对生产率和产品质量有负面影响。

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