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Compressive behaviour of fibre-reinforced cemented paste backfill

机译:纤维增强胶浆回填的抗压性能

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Reinforcement of cemented paste backfill (CPB) with polypropylene fibres was investigated as a way of improving the stability of backfilled underground mine stopes. A series of unconfined compressive strength (UCS) tests were carried out on both non-reinforced and fibre-reinforced cemented tailings. Sandy silt tailings from a nickel mine in Western Australia were used in the study. Ordinary Portland cement at concentrations of 3-5% by weight of tailings and 0-0.5% Adfil-Ignis polypropylene fibres by weight of total solids were used for specimen preparation. The stress strain curves from the UCS tests showed the inclusion of fibres increased the UCS and significantly reduced the post peak strength loss. Accordingly, the fibre-reinforced specimens were found to be much more ductile than unreinforced specimens, which is highly desirable in many backfill applications. Sliced images acquired from X-ray computed tomography (CT-scan) demonstrated that the observed ductile behaviour of reinforced specimens could be explained by the restraint to crack growth provided by the mobilised fibre tensile strength. At large strains, fibre-reinforced specimens had virtually zero dislodged fragments and retained their integrity as shown in both experimental photos and CT sliced images. This was different from unreinforced specimens, which developed large, wide cracks that resulted in fracturing of the tested specimens. The potential for improving the self-supporting capacity of the fill mass using fibre reinforcing but less cement is discussed and potential advantages, such as reduced ore dilution when excavating adjacent stopes are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了用聚丙烯纤维增强水泥浆回填(CPB)的方法,以提高回填地下矿场的稳定性。在非增强和纤维增强水泥尾矿上进行了一系列无侧限抗压强度(UCS)测试。该研究使用了来自澳大利亚西部镍矿的砂质粉砂尾矿。以尾矿重量的3-5%(重量)和总固体重量的0-0.5%的Adfil-Ignis聚丙烯纤维的浓度使用普通波特兰水泥制备样品。 UCS测试的应力应变曲线表明,纤维的加入增加了UCS并显着降低了峰后强度损失。因此,发现纤维增强的样品比未增强的样品具有更大的延展性,这在许多回填应用中是非常需要的。从X射线计算机断层扫描(CT扫描)获取的切片图像表明,所观察到的增强标本的延性行为可以通过动纤抗张强度对裂纹扩展的约束来解释。如实验照片和CT切片图像所示,在大应变下,纤维增强的标本实际上具有零移位的碎片并保持了其完整性。这与未增强的样品不同,未增强的样品会产生大而宽的裂纹,导致测试样品破裂。讨论了使用纤维增强材料但水泥用量更少来提高填充物料自支撑能力的潜力,并讨论了潜在的优势,例如在挖掘相邻的采场时减少了矿石稀释。 (C)2015 Elsevier Ltd.保留所有权利。

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