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为研究不同养护温度下矿粉水泥石早期(28 d)强度及细观孔结构分布特征,设定水泥石的水灰比为0.24,以掺入不等量的矿粉为掺合料,分别将水泥试块在-3℃和20℃条件下养护28 d,测定水泥石的抗压强度,用孔结构分析仪对细观孔结构进行分析,并通过水泥石的孔隙结构计算水泥石的实际抗压强度,对比分析其规律。结果表明:矿粉掺量相同时,-3℃养护下水泥石较20℃养护下水泥石早期抗压强度明显降低,水泥石硬化后含气量变小,孔间距系数和气孔平均弦长增大,孔径粗化严重;随着矿粉掺量的增多,水泥石早期抗压强度呈下降趋势,水泥石硬化后含气量增大,孔间距系数和气孔平均弦长增大,其中-3℃养护下的水泥石孔间距系数、气孔平均弦长和早期抗压强度变化趋势较20℃养护下变化明显。

In order to study the early (28 d) strength and distribution of pore microstructure characteristics of slag cement block under different curing temperature , the water cement ratio of the cement block was 0.24, doped with different amounts of slag as admixture to the cement block , the cement blocks were maintained at minus three degrees Celsius and twenty degrees Celsius for twenty -eight days respectively , measure the compressive strength of cement block , analysis of the early pore structure of cement block by using the pore structure analyzer , then through the pore structure of cement block calculate the actual strength of cement blocke , comparative analysis of its law .The results show that:at the same amount of slag, the early compressive strength of the cement blocks at minus three degrees Celsius curing temperature is decreased significantly than at twenty degrees Celsius curing temperature , hardened cement air containing volume becomes small , the bubbles spacing factor and average pore chord length increase, pore coarsening seriously;With the increase of slag amount , the early compressive strength of cement block is decreased , hardened cement air containing volume increases , the bubbles spacing factor and average pore chord length increase ,the bubbles spacing factor , average pore chord length and early compressive strength of cement blocks at minus three degrees Celsius curing temperature change trend is more obviously than at twenty degrees Celsius .

参考文献

[1] 赵顺增,游宝坤,刘立,贾福杰,李长成,武旭南.膨胀水泥石的孔结构探讨[C].第6届全国混凝土膨胀剂学术交流会论文集,2014:50-58.
[2] 张楚汉;唐欣薇;周元德;江汇.混凝土细观力学研究进展综述[J].水力发电学报,2015(12):1-18.
[3] 杨建平;杨岁桥;李曼;谭春萍.中国冻土对气候变化的脆弱性[J].冰川冻土,2013(6):1436-1445.
[4] 谢超;王起才;于本田;惠兵.不同养护条件下同等强度混凝土抗氯离子渗透性和细观结构对比分析试验研究[J].硅酸盐通报,2015(9):2496-2500.
[5] 王起才;张凯;王庆石.-3℃养护下引气混凝土渗透性能与孔结构特性[J].材料导报,2015(14):131-134,139.
[6] 尹红宇 .混凝土孔结构的分形特征研究[D].广西大学,2006.
[7] 王昌义;陈迅捷;张燕驰;蔡跃波.磨细矿渣高性能混凝土研究[J].水运工程,2000(8):12-18.
[8] 孟庆超 .混凝土耐久性与孔结构影响因素的研究[D].哈尔滨工业大学,2006.
[9] 吴方政 .引气剂对混凝土流变性及气泡特征参数影响的研究[D].河北工程大学,2013.
[10] 董淑慧;冯德成;江守恒;朱卫中.早期受冻温度对负温混凝土微观结构与强度的影响[J].黑龙江科技学院学报,2013(1):63-66.
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