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按水灰比修正的混凝土强度公式在粉煤灰混凝土配合比设计中的应用 被引量:4
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作者 危加阳 《水利与建筑工程学报》 2014年第3期133-137,共5页
粉煤灰混凝土配合比设计发现,随胶水比(灰水比)增大,混凝土强度比按混凝土强度公式(鲍罗米公式)计算得到的强度有加速增大的趋势。为充分利用胶凝材料的强度,提出按水灰比修正过的鲍罗米公式进行粉煤灰混凝土配合比设计,同时提出60 d粉... 粉煤灰混凝土配合比设计发现,随胶水比(灰水比)增大,混凝土强度比按混凝土强度公式(鲍罗米公式)计算得到的强度有加速增大的趋势。为充分利用胶凝材料的强度,提出按水灰比修正过的鲍罗米公式进行粉煤灰混凝土配合比设计,同时提出60 d粉煤灰混凝土强度公式。并举例指出该方法应用时应注意的问题。 展开更多
关键词 粉煤灰混凝土配合比 水灰比(水胶比) 混凝土强度公式 强度富余 活性指数
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木质素聚合物改性粉煤灰混凝土性能的试验研究
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作者 黄刚 刘远才 《林业科技》 2011年第2期20-22,共3页
以高沸醇溶剂法制备木质素,并经化学处理获得木质素磺酸钙作为减水剂改性粉煤灰混凝土;通过粉煤灰混凝土配比的设计,对试验数据进行了研究与分析。试验证明,通过自制的木质素聚合物改性粉煤灰混凝土,对其性能具有一定的影响。
关键词 高沸醇溶剂法 木质素磺酸钙 粉煤灰混凝土配合比 粉煤灰混凝土强度
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Concrete Based on Fly Ash Alumosilicate Polymers
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作者 R. Sulc T. Strnad +4 位作者 F. Skvara P. Svoboda Z. Bittnar V. Smilauer L. Kopecky 《Journal of Environmental Science and Engineering》 2011年第6期728-735,共8页
Concretes on the basis of the alumosilicate polymer can be prepared by alkali activation (NaOH, sodium water glass) of waste brown coal fly ash. The preparation is possible: (1) by using a short-term heating of t... Concretes on the basis of the alumosilicate polymer can be prepared by alkali activation (NaOH, sodium water glass) of waste brown coal fly ash. The preparation is possible: (1) by using a short-term heating of the concrete mix (to 80 ℃); or (2) by allowing the mix to harden spontaneously at a temperature of 20 ℃. The concretes prepared by short-time heating attain high strength values after their preparation; the values are comparable to those characterizing concretes obtained on the basis of Portland cement. The strength development of concretes hardening at 20 ℃ is substantially less steep but, nevertheless, the strength attained after about 60 days is practically identical with that of the concretes exposed to a short-time heating. The shrinkage of concretes prepared by short-time heating is very small as compared with the concretes allowed to harden spontaneously; the shrinkage of latter concretes is larger than that of the concretes on the basis of Portland cement. The concretes on the basis of alumosilicate polymer exhibit much better resistance to the corrosive action of the environment as compared with those prepared on the basis of Portland cement. 展开更多
关键词 Alumosilicate polymer GEOPOLYMER CONCRETE fly ash
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