1) cement setting and hardening
水泥凝结硬化
2) hydration and setting and hardening
水化凝结硬化
3) cement setting
水泥凝结
4) setting and hardening
凝结硬化
1.
The influence on the setting and hardening and NH+4 ion exchange capacity of the products at ambient temperature and moisture-retentive was studied after dosage different granulated blast-furnace slag to the "alkali-metakaolin" system.
研究了不同粒化高炉矿渣掺量对"碱-偏高岭石-矿渣"体系在室温下凝结硬化性能的影响和对反应物的NH4+交换容量的影响。
2.
The influence of different curring temperatures(10 ℃、20 ℃、30 ℃、60 ℃、90 ℃) on the setting and hardening of metakaolinite-based geopolymer and NH+4 ion exchange capacity of the products were studied.
研究了不同养护温度(10℃、20℃、30℃、60℃、90℃)对偏高岭土基地质聚合物凝结硬化性能的影响和对反应物的NH4+交换容量的影响。
3.
According to the characteristics of the resistivity evolution curves,the four stages were well defined: ion release,ion reorientation,setting and hardening,stabilization.
采用无电极电阻率测量仪自动连续监测了分别掺加0、10%、30%、50%、70%粉煤灰的地聚合物浆体凝结硬化全过程中的电阻率变化,分析了粉煤灰基地聚合物浆体随时间发展的物理化学变化规律,探讨了偏高岭土和粉煤灰与碱激发剂之间的反应机理,并将地聚合化反应过程分成:离子释出、离子重构、凝结硬化及稳定4个特征阶段。
5) Fast setting and hardening Cement
快凝快硬水泥
6) hardened cement paste
硬化水泥石
1.
An analytical method for prediction of the water permeability of hardened cement paste;
硬化水泥石水渗透系数预测的解析法
2.
A multi-level simulation method is presented for predicting the elastic moduli of hardened cement paste.
提出了硬化水泥石弹性模量预测的分级模拟方法。
3.
The effect and mechanism of water-cement ratio and mineral admixtures on thermal expansion of hardened cement pastes from 20 to 85 ℃ were investigated.
研究了水灰比和矿物掺合料对硬化水泥石在20℃~85℃热膨胀性能的影响,并进行了机理分析。
补充资料:水泥凝结硬化
分子式:
CAS号:
性质:水泥浆体凝结硬化的过程。水泥加水拌和后具有可塑性和流动性,随着水化反应的不断进行,水泥熟料矿物被水化成水化硅酸钙、氢氧化钙、水化硫铝酸钙等水化产物,水泥浆体逐渐失去流动性,转变成具有一定强度的石状体。
CAS号:
性质:水泥浆体凝结硬化的过程。水泥加水拌和后具有可塑性和流动性,随着水化反应的不断进行,水泥熟料矿物被水化成水化硅酸钙、氢氧化钙、水化硫铝酸钙等水化产物,水泥浆体逐渐失去流动性,转变成具有一定强度的石状体。
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