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首页> 外文期刊>International Journal of Mineral Processing >Thermal, hydraulic and mechanical performances of cemented coal gangue-fly ash backfill
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Thermal, hydraulic and mechanical performances of cemented coal gangue-fly ash backfill

机译:水泥煤矸石粉煤灰回填的热,水力和机械性能

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摘要

Cemented coal gangue-fly ash backfill (CGFB, a mixture of binder, coal gangue, fly ash and water) is introduced and applied to fill underground voids in coal mines. Once placed, the CGFB mixtures should have favorable stability and environmental performance, and these are closely related to the thermal, hydraulic and mechanical properties of the CGFBs. In this study, column and block experiments are conducted to investigate the coupled evolutions of the main performance characteristics (thermal, hydraulic and mechanical) of CGFB structures. A test apparatus is designed and equipped to investigate the thermal (temperature development), hydraulic (water drainage) and mechanical (lateral expansion) performances of CGFB columns under pressure in drained and laterally constrained conditions. The CGFBs are cured at room temperature and monitored for 30 days. Additionally, water drainage and uniaxial compressive strength (UCS) of CGFB blocks at different curing temperatures (20 and 50 degrees C) are also tested. The results indicate that the hydraulic and mechanical behaviors of the CGFBs are significantly affected by thermal factors (heat generated by binder hydration and heat transfer between the CGFB and its surroundings). This study will contribute to a better understanding of the thermohydro-mechanical behavior of underground CGFB structures, and thus a better design of stable and environment-friendly CGFBs. (C) 2017 Elsevier B.V. All rights reserved.
机译:胶结煤矸石 - 飞灰回填(CGFB,粘合剂,煤矸石,粉煤灰和水的混合物)被引入并应用于煤矿中的地下空隙。一旦放置,CGFB混合物应具有有利的稳定性和环境性能,这些性能与CGFBS的热,液压和机械性能密切相关。在该研究中,进行柱和块实验,以研究CGFB结构的主要性能特征(热,液压和机械)的耦合演进。设计并配备了测试设备,以研究CGFB柱在排水和横向受约束条件下的压力下的热(温度显影),液压(排水)和机械(横向膨胀)性能。 CGFB在室温下固化并监测30天。另外,还测试了不同固化温度(20和50℃)的CGFB块的排水和单轴压缩强度(UCS)。结果表明,CGFB的液压和机械行为受到热因子的显着影响(通过CGFB及其周围环境之间的粘合剂水合和热传递产生的热量)。该研究将有助于更好地理解地下CGFB结构的热脱发机械行为,从而更好地设计稳定和环保的CGFB。 (c)2017 Elsevier B.v.保留所有权利。

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