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粉煤灰掺量和再生骨料替代率对再生混凝土强度影响研究 被引量:5
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作者 刘婷 刘京红 +2 位作者 张仕桦 周双双 马凯 《河北农业大学学报》 CAS CSCD 北大核心 2020年第1期148-152,共5页
建筑废物未能有效处理给环境带来极坏影响,为解决此问题,本研究设计了2种再生粗骨料取代率、4种粉煤灰掺入量共计8种变量因子的再生混凝土试块,其强度等级为C30。对每一个试块都进行了超声声速值、回弹值和抗压强度值测定的试验,并对数... 建筑废物未能有效处理给环境带来极坏影响,为解决此问题,本研究设计了2种再生粗骨料取代率、4种粉煤灰掺入量共计8种变量因子的再生混凝土试块,其强度等级为C30。对每一个试块都进行了超声声速值、回弹值和抗压强度值测定的试验,并对数据进行整理和误差分析。结果表明:当再生粗骨料的掺加量愈大时,其强度就愈来愈低。适当的掺入粉煤灰可以改善再生混凝土的密实度,当粉煤灰等量替代水泥的掺入量为10%时,其强度较没有掺入粉煤灰的再生混凝土的强度提高了4.08%。故在实际再生混凝土工程中可适量掺入粉煤灰。 展开更多
关键词 粉煤灰 再生混凝土 抗压状态 超声回弹
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Cemented backfill technology based on phosphorous gypsum 被引量:5
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作者 王新民 赵彬 张钦礼 《Journal of Central South University》 SCIE EI CAS 2009年第2期285-291,共7页
Physical-chemical properties of phosphorous gypsum, proportion and cemented mechanism of slurry with gypsum as aggregate were studied to remove the harms of gypsum pile, combining with difficult problems of excessive ... Physical-chemical properties of phosphorous gypsum, proportion and cemented mechanism of slurry with gypsum as aggregate were studied to remove the harms of gypsum pile, combining with difficult problems of excessive mined-out gobs, enormous ore body under roadway and low recovery ratio of Yongshaba Mine, Kaiyang Phosphor Mine Group, Guizhou Province, China. An appropriate backfill system and craflwork were designed, using shattering milling method to crush gypsum, double-axles mixing and strong activation mixing way to mix slurry, cemented slurry and mullock backfill alternately process. The results show that gypsum is fit for backfilling afterwards by adding fly ash, though it is not an ideal aggregate for fine granule and coagulate retardation. The suggested dosage (the mass ratio of cement to fly ash to gypsum) is 1:1:6-1:1:8 with mass fraction of solid materials 60%-63%. Slurry is transported in suspend state with non-plastic strength, and then in concretion state after backfilling. The application to mine shows the technology is feasible, and gypsum utilization ratio is up to 100%. Transportation and backfill effect is very good for paste-like slurry and drenching cemented slurry into mullock, and the compressive strength and recovery ratio are 2.0 MPa and 82.6%, respectively, with the maximum subsidence of surface only 1.307 mm. Furthermore, the investment of system is about 7 × 10^6 yuan (RMB), only 1/10 of that of traditional paste backfill system. 展开更多
关键词 phosphorous gypsum self-flowing transportation cemented backfill cemented mechanism backfill system and craftwork
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