用粉煤灰“stanari”部分替代砖生产中的粘土“Čavka”

M. Jovanović, A. Mujkanović, N. Bušatlić, Elma Selimović
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引用次数: 1

摘要

采用“斯坦纳里”火电厂的F级粉煤灰与busova a的高塑性砖粘土结合制成建筑砖。对砖粘土和粉煤灰的化学矿物组成、粒度分布和比重进行了表征。与粘土相比,粉煤灰的大颗粒比例更高,比重更低。砖粘土与20%、40%和60%的粉煤灰混合,形成棱柱状,干燥,然后在800、900和1000°C下烧制。对烧制的陶瓷棱镜的吸水率、表观孔隙率、表观密度和强度进行了表征,并与传统的粘土棱镜进行了比较。粉煤灰掺量为20%、40%和60%时,试样质量分别降低14%、23%和31%,表观孔隙率分别提高60%、100%和160%,抗压强度分别降低50%、80%和90%。试验和对比研究表明,粉煤灰“Stanari”可作为粘土“Čavka”的添加剂,用量最大为20%,最佳烧成温度为900℃。
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PARTIAL REPLACEMENT OF CLAY “ČAVKA” WITH FLY ASH “STANARI” IN BRICK PRODUCTION
Fly ash class F from Thermal Power Plant “Stanari” was used in combination with highly plastic brick clay from Busovača to develop building bricks. The brick clay and fly ash were characterized for chemical and mineralogical composition, grain size distribution, and specific gravity. The fly ash has a higher proportion of larger particles and lower specific gravity than clay. The brick clay was mixed with 20, 40, and 60 wt. % of fly ash, formed in a prismatic shape, dried and then fired at 800, 900, and 1000 °C. The fired prisms were characterized for water absorption, apparent porosity, apparent density, and strength and compared with conventional clay prisms. The addition of fly ash of 20, 40, and 60% reduced the mass of the samples by 14, 23, and 31%, increased apparent porosity by 60, 100, and 160%, and reduced the compressive strength by 50, 80, and 90%, respectively. Conducted tests and comparative studies have shown that the fly ash “Stanari” can be used as an additive to the clay “Čavka” in the maximum amount of 20 % and the optimum firing temperature is 900 °C.
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