1. 重庆大学 材料科学与工程学院,重庆,400045
2. 重庆市建设技术发展中心,重庆,400015
纸质出版:2012
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谢厚礼, 彭家惠, 郑云, 等. 成孔剂对烧结页岩砖性能的影响[J]. 土木与环境工程学报(中英文), 2012,34(2):149-154.
XIE Hou-li, PENG Jia-hui, ZHENG Yun, et al. Influence of Pore-forming Agents on the Properties of Sintered Shale Brick[J]. Journal of Civil and Environmental Engineering, 2012, 34(2): 149-154.
谢厚礼, 彭家惠, 郑云, 等. 成孔剂对烧结页岩砖性能的影响[J]. 土木与环境工程学报(中英文), 2012,34(2):149-154. DOI: 10.11835/j.issn.1674-4764.2012.02.025.
XIE Hou-li, PENG Jia-hui, ZHENG Yun, et al. Influence of Pore-forming Agents on the Properties of Sintered Shale Brick[J]. Journal of Civil and Environmental Engineering, 2012, 34(2): 149-154. DOI: 10.11835/j.issn.1674-4764.2012.02.025.
选用锯末、煤矸石和造纸污泥作为烧结页岩砖的成孔剂
系统研究不同成孔剂的热解特性及其对页岩烧结砖的可塑性、体积密度、抗压强度、显孔隙率、吸水率等性能的影响。结果表明:随着锯末掺量的增加
烧结砖中孔隙数量增加
同时其体积密度和强度迅速下降
吸水率增加
因而掺量应控制在6%以内;煤矸石可塑性较差
烧失量较小
烧结页岩砖的孔隙率低
从而导致其吸水率低
体积密度和强度降低幅度都较小
实际生产中可根据内燃砖发热量和可塑性要求
适量掺加煤矸石;造纸污泥的可塑性较好
随着掺量增加混合料的可塑性变大
但掺量过大成型搅拌困难
Sawdust
coal gangue and paper sludge were chosen as pore-forming agents of sintered shale brick. The pyrolysis behaviors of different forming agents were studied and the influences of the agents on bulk density
compressive strength
porosity
and water absorption properties of the shale brick were also investigated. It is shown that
with the increase of the dosage of sawdust
pore number of the sintered bricks and water-absorption increase
while the volume density and strength fall rapidly. Thus
the dosage of sawdust should be controlled within 6%. Because of poorer plasticity and lower ignition of coal gangue as well as low porosity rate of sintered bricks
the water-absorption of sintered bricks is poor
and decreases of density and strength are not obvious. In practical production
according to the requirements of brick-making heat and plasticity
a moderate amount of coal gangue can be added. The plasticity of the bricks improves as the dosage of paper sludge increases due to its good plasticity. However
excessive dosage of paper sludge will result in large shrinkage of sintered brick
low strength and high water absorption; therefore
the dosage should not exceed 7%.
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