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机构地区:[1]柳州市建筑设计科学研究院,广西柳州545001 [2]中国市政工程中南设计研究总院有限公司第二设计院,湖北武汉430014 [3]石河子大学水利建筑工程学院,新疆石河子832000
出 处:《新型建筑材料》2014年第10期43-45,67,共4页New Building Materials
基 金:国家科技支撑计划项目(2013BAJ03B02)
摘 要:蒸压粉煤灰砖的抗冻性能是衡量其耐久性的重要指标。通过对不同原料配合比、不同龄期的全废渣蒸压粉煤灰砖的冻融循环试验研究,结合现有理论分析,结果表明:全废渣蒸压粉煤灰砖在经历15次冻融循环后表面基本完好,试件平均质量和强度有所增长,在经历30次冻融循环之后,砖的质量损失率和强度损失率会明显增大;适当增加骨料掺量,可以提高砖的抗冻性能;电石渣和粉煤灰掺量过大对砖抗冻性不利,电石渣比粉煤灰对砖的抗冻性更为不利;出釜龄期短的砖与龄期长的砖相比,后者比前者的抗冻性好。Frost resistance of autoclaved fly ash brick is an important indicator to measure its durability. Through the experi-mental research on different mix of raw materials,different ages of all slag autoclaved fly ash brick freeze-thaw cycles, combinedwith the existing theoretical analysis,the results show that:after experiencing 15 freeze-thaw cycles whole waste autoclaved fly ashbrick surface largely intact and average mass and strength of specimen increase,and after experiencing 30 freeze-thaw cycles,themass loss rate and the strength loss rate of brick will be significantly increased; appropriate to increase the aggregate quantity canincrease frost resistance of bricks:calcium carbide slag and fly ash content is too large to tile frost resistance,calcium carbide slagis even more important than fly ash brick on the frost resistance of disadvantage: compared to a short kettle age of brick and age-long brick the latter has better frost resistance property.
分 类 号:TU522.19[建筑科学—建筑技术科学]
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