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Laboratory investigation into the compressive strength of cemented paste tailings aggregate fills

机译:水泥浆尾矿骨料挤压抗压强度的实验室调查

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The use of backfill has now become a component of underground mining operations. In terms of mining methods, the top-down method would be less expensive than the bottom-up method, irrespective of the rock mass hardness. However, the implementation of the top-down method reguires a high compressive strength (~ 4 MPa) of backfill. The addition of aggregates (e.g. crushed waste rock) to the tailings could achieve this targeted strength. This paper investigates the effect of adding aggregates (crushed waste rock) on the compressive strength development of cemented paste tailings aggregate fill (PAF). Two types of waste rock were crushed to two aggregate sizes (0/10 and 0/15 mm) and their proportion in PAF mixtures varied from 10 to 50 %v/v (by cumulative volume of dry crushed waste rock and tailings). These are oxidised acid generating waste rocks (AG) and non-acid generating waste rocks (NAG). The binder type used is a blend of 20% general use Pprtland cement (type GU) and 80% of ground granulated blast furnace slag (GBFS) at 5 wt% (by total dry mass of aggregates and tailings). The unconfined compressive strength was determined at seven, 28 and 90 days of curing. The results show that the addition of crushed development waste rock to the cemented paste backfill increases significantly its compressive strength. The strength gain varies in the range 28-93% at 28 days and 5-44% at 90 days of curing in drained conditions. However, the strength development is influenced by the aggregate class of size, the volume and the mineralogy of the aggregates in the mixture.
机译:使用回填现已成为地下采矿业务的组成部分。在采矿方法方面,无论岩石质量硬度如何,自上而下的方法比自下而上的方法更便宜。然而,自上而下方法的实现使回填的高压缩强度(〜4MPa)。向尾矿添加聚集体(例如压碎的废岩)可以实现这种靶向强度。本文研究了骨料(压碎废岩)对水泥浆料尾矿综合填料(PAF)抗压强度发展的影响。两种类型的废岩被压碎于两个聚集尺寸(0/10和0/15mm),PAF混合物中的比例从10%到50%V / V(通过干粉碎的废岩和尾矿的累积体积)。这些是氧化酸产生废岩(Ag)和非酸产生废岩(NAg)。使用的粘合剂类型是20%的普遍用PPRTLAND水泥(型GU)和80%的地面粒状高炉炉渣(GBF),5wt%(通过总干燥的聚集体和尾矿)。在固化的七个,28和90天测定不连续的抗压强度。结果表明,将压碎的糊状物回填的碎片发育废物岩石的增加显着增加了其抗压强度。强度增益在28-93%的范围内变化在28-93%的范围内,在排水条件下固化的90天,5-44%。然而,强度发展受到混合物中聚集体的总体大小的总体类别,体积和矿物学的影响。

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