Ab'/> Experimental characterization of the influence of solid components on the rheological and mechanical properties of cemented paste backfill
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Experimental characterization of the influence of solid components on the rheological and mechanical properties of cemented paste backfill

机译:固体成分对水泥浆料回水流变和力学性能影响的实验表征

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AbstractAs an experimental study, the research in this paper was conducted to illustrate the influence of solids content and composition of cemented paste backfill (CPB) on the material's rheological and mechanical characteristics. A new type of CPB was used in this research, which was composed of waste rock as coarse aggregates, fly ash as fines, lime slag as activator proportions and ordinary Portland cement as binder. The mechanical strength of CPB improved significantly with an increase in the solids content, but the workability decreased because the water content decreased. When the solids content was 75% by weight (wt.%), the slump value was 165mm, which met the requirement for pumping. At a solids content of 75%, the CPB also had an unconfined compressive strength (UCS) of 1.83MPa, tensile strength of 0.401MPa, and Poisson's ratio of 0.136 at a curing time of 28days. Increasing the fly ash proportion caused the workability and mechanical strength of the CPB to increase until they reached maximum values, at which point subsequent increases caused the values to decrease. The workability of CPB reached its peak when fly ash proportion was 35wt.%, and the mechanical strength reached its peak at 45wt.%. The workability of CPB decreased as the lime slag proportion increased. The strength of CPB also increased with an increase in the lime slag proportion, however, only until it reached 12wt.%, at which point the strength began to decline. The addition of more cement resulted in much better mechanical performance of the CPB samples, especially with longer curing times. However, workability of CPB increased as cement portion increased in the range of 0% to 2.5%, before decreasing over the range of 2.5%–5.0%.Highlights?A new cemented paste backfill (CPB) composed by waste materials was presented.?How the factors influence rheological and mechanical properties of CPB was studied.?Non-contact digital photogrammetry method was used to test Poisson's ratio of CPB.]]>
机译:<![cdata [ 抽象 作为一个实验研究,进行了本文的研究以说明固体含量和粘合成分的影响粘贴回填(CPB)对材料的流变和机械特性。在本研究中使用了一种新型CPB,该研究由废岩组成,作为粗骨料,粉煤灰作为罚款,Lime渣作为活化剂比例和普通波特兰水泥作为粘合剂。 CPB的机械强度随着固体含量的增加而显着改善,但由于水含量降低,可加工性降低。当固体含量为75重量%(重量%)时,坍落度为165mm,符合泵送的要求。在固体含量为75%,CPB也具有1.83MPa的无束缚的抗压强度(UCS),抗拉强度为0.401MPa,并且在28天的固化时间下的泊松比为0.136。增加粉煤灰比例导致CPB的可加工性和机械强度增加,直到它们达到最大值,此时随后增加导致值减少。当粉煤灰比例为35wt时,CPB的可加工性达到其峰值。%,机械强度达到45wt%。%。随着石灰渣比例增加,CPB的可加工性降低。然而,只有直到它达到12wt,CPB的强度也随着石灰渣比例的增加而增加。%,此时强度开始下降。添加更多水泥导致CPB样品的更好的机械性能,尤其是较长的固化时间。然而,随着水泥部分的增加在0%至2.5%的范围内增加,CPB的可加工性增加,在减少2.5%-5.0%的范围内。 亮点 提出了废料组成的新的粘贴回填(CPB)。 因素如何影响流变的因素研究了CPB的力学性质。 非联系数码摄影测量MMMOTRY M Ethod用于测试Poisson的CPB比率。 ]]>

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