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1)  Cementitious repair material
水泥基修补材料
2)  cement-based materials
水泥基材料
1.
Study of effect of sulfide on zinc ion in cement-based materials;
硫化物对水泥基材料中锌的控制研究
2.
Influence of freezing rate on the cryo-deformation and cryo-damage of cement-based materials during freeze-thaw cycles;
冻融情况下降温速率对水泥基材料变形和损伤的影响
3.
Effect of shrinkage-reducing admixture on hydration and shrinkage deformation of cement-based materials at early ages;
减缩剂对水泥基材料早期水化及收缩变形性能的影响
3)  cement based material
水泥基材料
1.
Study on effect of silica fume on electromagnetic shielding of cement based materials;
硅灰对水泥基材料电磁屏蔽性能影响研究
2.
The reversibly thermochromic cement based material at normal temperature was prepared by adding reversibly thermochromic microencapsules in white Portland cement.
在白水泥中掺加变色微胶囊可制备出常温可逆温致变色水泥基材料。
3.
In this paper, the relationships between inner microstructure and apparent electrical properties, change of electrical resistivity and external applied load of carbon fiber reinforced cement based material were investigated.
水泥基材料是一种高电阻率的惰性材料 ,通过掺入一定体积含量 (0 。
4)  cementitious materials
水泥基材料
1.
Studies on the influence of fine aggregates on the thermal expansion of cementitious materials;
集料对水泥基材料热膨胀性能影响的研究
2.
Effect of sulfate on the microstructure of cementitious materials;
硫酸盐对水泥基材料微观结构的影响
3.
Influence on the volume stability of cementitious materials on the cracking of dam concrete;
水泥基材料体积稳定性对大坝混凝土开裂的影响
5)  cement-based material
水泥基材料
1.
Experimental study on waste tire rubber modified cement-based material;
废旧轮胎橡胶改性水泥基材料的试验研究
2.
Development of an on-line monitor for volume deformation of cement-based material under multi-environment;
一种多环境下水泥基材料体积变形在线监测仪的研发
3.
Influence of compound mineral admixtures on alkalinity of cement-based material pore solution;
掺合料复掺对水泥基材料孔溶液碱度的影响
6)  cement based materials
水泥基材料
1.
Effect of temperature on the hydration properties of high calcium pfa cement based materials;
温度对高钙粉煤灰水泥基材料水化性能的影响
2.
The effect of shrinkage reducing agent on the shrinkage performance of the cement based materials;
减缩剂对水泥基材料收缩性能的影响
3.
The results show that using cement based materials as matrix of piezoelectric smart composites can solve the mismatch problem, fabrication problem, and reduce the polarization voltage.
初步的分析结果和实验结果显示 :采用水泥基材料作为压电机敏复合材料的基体 ,可以有效解决机敏材料与混凝土母体结构材料之间的相容性问题 ,克服复合材料制备的困难和降低极化电压 ,从而提高极化效率和压电性能 ,并达到降低材料成本的目
补充资料:水泥基复合材料
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CAS号:

性质:以硅酸盐水泥为基体,以耐碱玻璃纤维、通用合成纤维、各种陶瓷纤维、碳和芳纶等高性能纤维、金属丝以及天然植物和矿物纤维为增强体,加入填料、化学助剂和水经复合工艺构成的复合材料。它比一般混凝土性能有所提高。以短切的耐碱玻璃纤维约3%~10%含量的复合材料为例,其密度为1600~2500kg/m3,抗冲强度8.0~24.5N·mm/mm2,压缩强度48~83MPa,热膨胀系数为(11~16)×10-6K-1。性能随所用原材料、配比、工艺和养护条件而异。水泥基复合材料基本上用于制造建筑构件,如内、外墙板、天花板等。

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