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1)  high fineness blust furnace slag powder
微细矿渣粉
1.
The influencing factors, such as the dosage of high fineness blust furnace slag powder (HBP), water cement ratio (w/c),are analyzed,and the mechanism of raising concrete strength by using HBP is discussed.
介绍了大流动性高强混凝土的配制研究情况 ,分析了微细矿渣粉 (HBP)掺量和水灰比等影响因素 ,讨论了 HBP提高混凝土强度的机理。
2)  ground granulated slag
矿渣微细粉
1.
Ready mixed concrete of ground granulated slag in precast members;
矿渣微细粉商品混凝土在蒸养预制构件中的应用
3)  pulverized slag powder
磨细矿渣微粉
1.
The early hydration activation of pulverized slag powder, Class C fly ash and Class F fly ash were determined and analyzed systematically by the Environmental Scan Electron Microscope (ESEM) and the TG-DTA.
本文采用环境扫描电子显微镜 (ESEM)和热重 差热 (TG- DTA)分析仪对磨细矿渣微粉、高钙粉煤灰、低钙粉煤灰的早期水化活性进行了系统测试和分析。
2.
The carbonation depths of the pulverized slag powder mortar,flyash mortar and slag\|flyash combination mortar are measured systematically.
系统测试了磨细矿渣微粉水泥砂浆、粉煤灰水泥砂浆及矿渣 -粉煤灰复合水泥砂浆的碳化深度 ,并从浆体孔隙率、Ca(OH) 2 含量和砂浆抗渗性分析了矿渣提高粉煤灰水泥基材料抗碳化能力的细观和微观机理 ,提出磨细矿渣微粉和粉煤灰复合是提高粉煤灰水泥基材料抗碳化能力最经济有效的措
3.
A quantitative mathematics function about the relationships between the compressive strength of the concrete and the compositions of ternary blended binders of cement-pulverized slag powder-superfine class F fly ash was educed by means of simplex-centroid experimental design.
通过单纯形重心设计方法得出了水泥磨细矿渣微粉超细粉煤灰三元复合胶凝材料组成与各龄期混凝土抗压强度的定量数学解析式 ,其对混凝土强度的预测精度基本可控制在 5 %的相对误差范围内 。
4)  Active micro slag fines
活性微细矿渣粉
5)  granulated blastfurnace slag
矿渣细粉
6)  slag micropowder
矿渣微粉
1.
Experimental study on compound admixture of slag micropowder
矿渣微粉基复合掺合料的试验研究
2.
A research is made on the effect of slag micropowder used as admixture on the performance of cement by adding different proportion of slag micropowder to the P·Ⅰ52.
5水泥中掺入不同比例的矿渣微粉,研究了矿渣微粉作混合材对水泥性能的影响。
3.
Taking volume decrement of blast furnace slag (BFS) and fly ash pump concrete in plastic stage as quantification basis for evaluation of pump concrete plastic shrinkage proves that plastic shrinkage crack of pump concrete has certain internal relation with adding slag micropowder.
以掺矿粉粉煤灰泵送混凝土塑性阶段的体积减缩量作为评价泵送混凝土塑性收缩的量化依据,证实了掺用矿渣微粉与混凝土塑性收缩裂缝有一定的内在关系,尤其是夏季采用25%以上的大掺量用于现浇楼板等薄壁结构混凝土工程,极易引发混凝土塑性裂缝。
补充资料:白垩,磨细白垩粉,白垩粉
CAS:1317-65-3
中文名称:石灰石;电石灰岩;石灰石粉;霰石,文石;方解石,碳酸钙晶体;碳酸钙,白垩;白云石,白云岩,石灰岩;石灰石,石灰石;大理石,大理岩,云石,玻璃球;波特兰石;白垩,磨细白垩粉,白垩粉
英文名称:Limestone;Agstone;agricultural limestone;aragonite;atomite;bell mine pulverized limestone;calcite;calcium carbonate;carbonic acid, calcium salt;chalk;dolomite;domolite;franklin;lithograpic stone;marble;natural calcium carbonate;portland stone;sohnhofen stone;whiting;limestone,powder;flux lime
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