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1)  earth heat cement
地热水泥
2)  high temperature geothermal well cement
高温地热井水泥
3)  geothermal steam well cement
地热油井水泥
4)  moderate heat cement
中热水泥
1.
Technical requirement and quality c ontrol for moderate heat cement used in secondary -phase engineering of t he Changjiang gorges;
用于三峡二阶段工程中热水泥的技术要求及质量控制
2.
According to the requirements of aggregate and concrete to cement,some indicators of moderate heat cement,such as strength,heat of hydration,specific surface area,MgO content,alkali content and content of C4AF,have raised higher than the national standards.
拉西瓦水电站坝址地处高原寒冷地区,根据骨料及坝体混凝土性能对水泥的要求,对中热水泥的强度、水化热、比表面积、MgO含量、碱含量和C4AF含量等指标提出了高于国家标准的要求,并采取一系列质量控制措施,确保了中热水泥的质量稳定。
3.
The sample moderate heat cement which was prepared by lead-zinc tailing was compared with the sample which was prepared by clay.
本文采用铅锌尾矿为原料烧制中热硅酸盐水泥,并与用粘土配料烧制的中热水泥进行对比。
5)  moderate heat portland cement
中热水泥
1.
Poor calcium problem of moderate heat portland cement-fly ash system;
中热水泥-粉煤灰体系的贫钙问题
2.
The expansive mechanism of moderate heat portland cement with slight expansion (MHCSE)in the system of high MgO clinker-gypsum was studied by XRD,SEM/EDAX,strength and expansion measurements.
用XRD ,SEM /EDAX和水泥净浆膨胀测定等方法对高镁中热水泥熟料 -石膏系统的双膨胀中热水泥进行了研究 ,得到 ( 1 )在熟料中明显地存在着相互分散的颗粒尺寸约为 5~ 7。
3.
The results also suggest if the early expansion of ettringite can be used, the retarded expansion of MgO in clinker can be improved, and it will provide basis and means for producing moderate heat portland cement and low h.
利用钙矾石在早期产生膨胀的性能对熟料中氧化镁的延缓性膨胀加以改进,可以为制造微膨胀型中热水泥和低热矿渣水泥提供依据。
6)  low thermal cement
低热水泥
1.
This paper studied the mechanism about varieties and quantities of gypsum affected to strength and expansion in low thermal cement.
本文采用XRD、压汞仪和力学性能测试等方法研究了低热水泥中石膏的品种和数量对强度、膨胀的影响机理,并分析了石膏掺量对水泥石孔结构的作用,结果表明:适宜的石膏品种和掺量可使水泥在强度满足要求的前提下,于规定的龄期内达到设计的膨胀值,并且可使水泥石孔隙减小、孔分布合理、结构致密。
补充资料:地热
地球内部所储存的热能。主要由地球内部放射性元素衰变放热而产生。主要从地球深部向表面热传导,以及通过火山、热水活动和构造运动来释放。在一定地质条件下,分散的地热聚集成可开发利用的地热资源。
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