The best ratio of fly ash geopolymer and the main factors affecting its strength are studied.
研究了粉煤灰地质聚合物的最佳配比及影响其强度的主要因素。
Geopolymer, a new kind of inorganic polymers, has some better properties than organic high polymers.
土壤聚合物是一类有别于有机高分子聚合物的新型无机聚合物,其具有优异性能。
Abstract: Geopolymer is a new cementitious material and has many properties which are superior to Portland cement.
摘要:矿物聚合物作为一种新型的胶凝材料具有许多优于传统胶凝材料的性能。
The SEM results indicate that the compact degrees of geopolymer are modified and the microcrack is reduced by doping organic resin.
SEM研究结果表明:有机树脂能有效的改善地质聚合物的致密程度,减少微裂纹的产生。
The existing problems in geopolymer materials are comprehensively analyzed and a new idea about improved toughness of geopolymer materials is proposed.
综合分析了地质聚合物材料存在的问题,提出了改善地质聚合物材料韧性的新思路。
Geopolymer is a new high performance cement activated by alkali, It obtains good properties in engineering application and is also environment friendly.
土聚水泥是一种新型的高性能碱激活水泥,具有优异的工程性能与环保特性。
In this paper, a brief review of the properties and applications of geopolymer is given. At last, its extensive prospects of applications are forecasted.
本文对矿物聚合物材料的性能和应用进行了综述,并对其应用前景进行了展望。
The physical and mechanical properties and durability properties of the geopolymer blend cement(GBC) concrete and the ordinary Portland concrete(OPC) are compared in laboratory experiments.
用正交试验确定合成地聚物水泥的最优配方,以单因素试验说明改变沸石的质量分数和粒度对地聚物水泥机械性能的影响。
Geopolymer is a kind of inorganic polymer. It combines the characteristics of organic polymer, ceramic and cement in preparation, properties and applications and has its own specific properties.
矿物聚合物是无机聚合物的一类,它在工艺、性能、用途等方面集有机高聚物、陶瓷、水泥等材料的特征,同时又是一种具备独特性能的新材料。
The study of hydration heat exhibits that the hydration rate of alkali-activated metakaolin slag slag-based geopolymer is accelerated leading to an increase of early hydration heat by doping resin.
水化热研究表明:有机树脂的掺入,加速了碱激发偏高岭土-矿渣基地质聚合物的水化速率,表现为早期水化热增加。
The effect of various factors shrinkage property of slag based geopolymer concrete are studied by shrinkage test, such as content and modulus of water glass, liquid-solid ratio, gel material content.
通过混凝土收缩试验,研究了水玻璃掺量、水玻璃模数、液固比、胶凝材料用量等因素对无机矿物聚合物混凝土收缩性能的影响。
The effect of various factors shrinkage property of slag based geopolymer concrete are studied by shrinkage test, such as content and modulus of water glass, liquid-solid ratio, gel material content.
通过混凝土收缩试验,研究了水玻璃掺量、水玻璃模数、液固比、胶凝材料用量等因素对无机矿物聚合物混凝土收缩性能的影响。
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