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Coupling binder hydration, temperature and compressive strength development of underground cemented paste backfill at early ages

机译:早期地下水泥浆回填的结合剂水化,温度和抗压强度的发展

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摘要

Cemented paste backfill (CPB) is an engineered mixture containing up to 60% solid tailings, and 3-7% binder (often) and water. CBP is used in backfilling underground mine voids. It receives great interest as one of the most commonly used ways in mine backfilling around the world. The usage of CPB greatly contributes to the disposal of mining tailings waste from the surface, increasing working place stability to extract more minerals safely. The key parameter for the design of CPB structure is its strength; namely, unconfined compressive strength (UCS). Knowing the time at which the CPB reaches its reasonable strength is very important for reducing the mining cycle and ensuring the safety of mine workers. As a cemented material, CPB strength is time and temperature dependent, and a function of the degree of hydration. The objective of this paper is to develop a numerical model for predicting the UCS of undrained CPB. Strength development is coupled with temperature and degree of hydration. For validation purposes, the predicted UCS will be compared with three groups of experimental results. The results show a good agreement between the predicted and measured values, and a new formula is suggested for including the effect of temperature into the UCS of CPB.
机译:水泥浆回填料(CPB)是一种工程混合物,包含高达60%的固体尾矿,3-7%的粘结剂(通常)和水。 CBP用于回填地下矿洞。作为全世界回填矿中最常用的方法之一,它引起了极大的兴趣。 CPB的使用极大地有助于处理来自地面的采矿尾矿废物,提高了工作场所的稳定性,从而可以安全地开采更多的矿物。 CPB结构设计的关键参数是强度。即无侧限抗压强度(UCS)。了解CPB达到其合理强度的时间对于缩短采矿周期和确保矿山工人的安全非常重要。作为胶结材料,CPB强度与时间和温度有关,并且与水合度有关。本文的目的是建立一个预测不排水CPB UCS的数值模型。强度的提高与温度和水合度有关。为了验证,将预测的UCS与三组实验结果进行比较。结果表明,预测值和测量值之间具有良好的一致性,并提出了一个新的公式来将温度的影响纳入CPB的UCS中。

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