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On dry SAG mills end liners: Physical modeling, DEM-based characterization and industrial outcomes of a new design

机译:在干凹槽底线衬垫上:物理建模,基于DEM的表征和新设计的工业成果

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The role of end liners in dry SAG mills with the objective of obtaining a thorough understanding of the effects of end liners design on the load trajectory and SAG mill performance was experimentally studied. The test works were conducted in a scale down mill with a diameter of 1 m. It was shown that the liner in the first and the last 20% of the mill length which were under the protection of the deflector liners experienced no deformation. To improve the grinding efficiency, a new design using low profile end liners incorporating radial ribs of proper height was investigated. The results indicated that the new lower height profile deflectors and 15.5 mm-height (14.5 cm in industrial scale) radial ribs improved the mill performance. A new liner design was proposed by decreasing the number of liners in each slice from 5 to 4 pieces. The thickness of the inner head liners reduced from 45 cm to 30 cm and the outer deflector liners were replaced by 143 cm radial ribs. The distance between feed and discharge end liners increased from 115 to 176 cm resulting in an increase of 53% in the effective mill length. The weight and volume of new end liners decreased by 9 and 23%, respectively. Installation of the new liners in Aerofall SAG mills increased the throughput from 441 to 465 t/h, decreased the product size from 519 to 480 mu m and decreased the amount of recycled material from the SAG mill product from 10 to 6%. The most significant improvement was observed in the liner life; an increase of 50- 200% in liner life depending on the location of end liners was achieved. The relining time also reduced by 37.5% with the new liners.
机译:实验研究了对干凹槽厂的最终衬垫在干凹槽厂的作用,实验研究了彻底了解载荷轨迹对载荷轨迹和凹槽性能的目标。测试工程在缩小磨机中进行,直径为1米。结果表明,在偏转器衬垫的保护下的第一和最后20%的研磨机长度的衬里没有变形。为了提高磨削效率,研究了使用具有适当高度径向肋的低轮廓端衬垫的新设计。结果表明,新的下高度轮廓偏转器和15.5毫米高(工业规模14.5厘米)径向肋条改善了轧机性能。通过将每个切片中的衬垫数量从5到4件减少,提出了一种新的衬垫设计。内头衬垫的厚度从45cm到30cm减小,并且外部偏转衬垫被143cm径向肋籽取代。进料和排出端衬垫之间的距离增加到115至176厘米,导致有效轧机长度增加53%。新终端衬垫的重量和体积分别降低了9%和23%。在AeroFALL SAG磨机中安装新的衬垫从441到465吨/小时的吞吐量增加,从519到480μm降低,从落下磨机产品的再循环材料的量降低,从10〜6%降低。在衬垫寿命中观察到最显着的改善;取决于衬垫寿命的增加50-200%,取决于终端衬垫的位置。新衬垫的再入时间也减少了37.5%。

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