通过减少边缘效应来提高HPGR效率

Q2 Materials Science Minerals & Metallurgical Processing Pub Date : 2016-02-01 DOI:10.19150/MMP.6461
B. Knorr, V. Herman, D. Whalen
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引用次数: 0

摘要

边缘效应是在高压磨削辊(HPGR)操作中广泛观察到的一种情况,它导致辊表面边缘的粉碎量减少。这种影响是由于静态侧板和高压轧制进料之间的滑动摩擦导致轧辊边缘局部破碎压力的降低而引起的。实际上,这会对设备尺寸产生影响,因为在开路作业中,边缘效应会导致更粗的颗粒报告给下游设备,在闭路作业中,循环负荷增加,HPGR回路容量降低。为了解决这个问题,美卓的HRC™HPGR采用了拱形框架,以保持辊子之间的平行关系,并允许使用法兰辊子设计。我们对750mm × 400mm HRC高压轧制机进行了一系列的中试试验,比较了在类似的操作条件下,法兰轧辊设计与传统侧板布置的性能。发现边缘效应与法兰轧辊设计显著降低。基于中试工厂的结果,研究和讨论了在全面应用中对电路设计、能源效率和整体工厂性能的影响。
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A closer look at increasing HPGR efficiency through reductions in edge effect
Edge effect is a condition widely observed in High Pressure Grinding Roll (HPGR) operations that gives rise to reduced comminution at the edges of the roll surfaces. This effect is caused by a reduction in the local crushing pressure at the edges of the rolls resulting from the sliding friction between the static cheek plates and HPGR feed material. Practically, this has an impact on equipment sizing, as the edge effect leads to coarser particles reporting to downstream equipment in open-circuit operations and increased circulating load and diminished HPGR circuit capacity in closed-circuit operations.To address this, Metso’s HRC™ HPGR incorporates an Arch-frame to maintain a parallel relationship between the rolls and allow for the use of a flanged roll design. We conducted a series of pilot-plant tests with a 750 mm by 400 mm HRC HPGR to compare the performance of the flanged roll design against that of a traditional cheek plate arrangement under similar operating conditions. The edge effect was found to be significantly reduced with the flanged roll design. Based on the pilot-plant results, the implications for circuit design, energy efficiency and overall plant performance in a full-scale application were investigated and discussed.
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来源期刊
Minerals & Metallurgical Processing
Minerals & Metallurgical Processing 工程技术-矿业与矿物加工
CiteScore
0.84
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: For over twenty-five years, M&MP has been your source for the newest thinking in the processing of minerals and metals. We cover the latest developments in a wide range of applicable disciplines, from metallurgy to computer science to environmental engineering. Our authors, experts from industry, academia and the government, present state-of-the-art research from around the globe.
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