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1)  alkali activating system
碱激发体系
1.
Grey relevant between alkali activating system and compressive strength of geopolymer
碱激发体系与土聚水泥抗压强度的灰色关联
2)  alkali activator
碱激发剂
1.
The results showed that the water glass alkali activator had best effect to reinforce the compressive strength of geopolymeric cement.
试验结果表明:水玻璃碱激发剂对土聚水泥抗压强度的影响效果最好,碱激发剂的强激发作用使土聚水泥产生较高的抗压强度;三乙醇胺对土聚水泥抗压强度的较好影响主要表现在早期,三乙醇胺作为混凝土早强剂,虽然对水泥系统的影响明显,但对本系统的影响不显著;聚丙烯酸钠对土聚水泥抗压强度的影响效果不佳,其原因可能是:大分子量的聚丙烯酸钠由于黏度过高,将偏高岭土颗粒包裹,使其无法与碱激发剂接触,影响了碱激发剂的激发效果。
3)  alkali-activated
碱激发
1.
Experimental study of alkali-activated compound industrial by-products;
碱激发复合渣体混凝土的试验研究
2.
Study on hydration mechanism of alkali-activated meta-kaolin cementitious material;
碱激发偏高岭土胶凝材料水化硬化机理的研究
3.
Using alkali-activated compound slag muck as cementitious materials to make environment burthen-down concrete is a kind of good approach to use various industry slag mucks effectively.
碱激发渣体作为胶结材配制环境降负混凝土是一种有效利用各类渣体的好途径。
4)  Alkali activation
碱激发
1.
Effect of alkali activation on fly ash activity;
碱激发对粉煤灰活性的影响
5)  alkali-activator
碱激发剂
1.
The results from probing into some key properties of the geoplymer show that the activating effect using water glass as a activator is not as good as using pure NaOH; the optimum proportion of slag to flyash is 4∶6 and the optimum blending ratio of alkali-activator is 10%;curing temperature of the geoplymer in water ought to be above 30℃; and cation Ca2+ plays an important ro.
研究表明:用水玻璃作为地聚合物碱激发剂,其激发效果不如纯N aO H好;最佳原料配比是:矿渣和粉煤灰之比为4∶6,碱激发剂的最佳掺量为10%;地聚合物在水中的养护温度应高于30℃;Ca2+阳离子对地聚合物的强度起着重要作用。
6)  alkali-activate
碱激发
1.
The fly ash is an industrial residue,it can be alkali-activated,and the reaction product has a lot of champion performance than the traditional gel material,such as excellent acidresistivity,resistance to elevated temperatures,resistance to sulphate attack,low shrinkage ratio,etc.
以工业废渣粉煤灰作为原材料,掺加碱性激发剂所制备的碱激发粉煤灰材料,具有良好的耐酸性、耐热性、耐硫酸盐腐蚀及低收缩率等特性,采用高温蒸汽养护可以快速提高早期强度。
补充资料:激发剂

激发剂:一种能够激发工业废渣里面的活性物质,让其发生化学反应的复合剂。粉煤灰、炉渣等工业废渣里面含有大量的SiO2和Al2O3这些活性物质,但它们以%26#8220;玻璃体%26#8221;惰性状态存在,通过激发的化学方法,让其发生化学反应,产生粘结性,可大大降低水泥用量提高其利用率。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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