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1)  mineral micro-powder
矿物掺和料微粉
2)  mineral admixture
矿物掺和料
1.
Experiment on the low alkalinity steel slag as mineral admixture
低碱度转炉钢渣用作矿物掺和料的试验研究
2.
The techniques such as optimization of basic parameters of concrete,admixture composition,large-volume mineral admixtures addition etc.
以适当的评价方法和指标研究了采用河砂自密实混凝土配合比且用机制砂代替河砂配制的混凝土的性能,并提出了机制砂自密实混凝土配合比基本参数优化技术、外加剂复掺技术、大掺量矿物掺和料复掺技术。
3.
Impedance spectra of a variety of mineral admixtures in dry state as well as in aqueous paste were shown with a view to comparing the difference among them and elucidating the mechanism of their hydration process.
研究了不同矿物掺和料在干燥或浆体状态下的交流阻抗谱,通过比较其差异对矿物掺和料的水合过程机理进行了探讨。
3)  mineral admixtures
矿物掺和料
1.
The effect of mineral admixtures on the cyclic sulfate resistance of concrete was investigated.
结果表明干湿循环-硫酸盐侵蚀耦合作用下混凝土性能发展分为2个阶段:即侵蚀初期性能的提高段与随后性能的劣化段;矿物掺和料的掺入不能改善混凝土的抗干湿循环-硫酸盐侵蚀性能。
2.
In order to investigate the effects of two mineral admixtures(i.
研究结果显示:矿物掺和料作为胶凝材料加入混凝土之后,由于其颗粒填充效应和火山灰效应,显著改变了硬化混凝土的微观结构特征以及初始缺陷的尺寸和空间分布特征;在水胶比和集料尺寸分布保持不变的条件下,矿物掺和料的掺入与否,是引起高性能混凝土展示出不同力学特性的主要原因。
4)  active mineral admixture
活性矿物掺和料
1.
By analysis of XRD and SEM,it is hold that high efficient active mineral admixture can enhance hydration of the system,improve mass of C-S-H gel,increase the number of C-S-H gel,weaken the negative influence of CH, and hence improve the strength and durability of concrete.
通过XRD衍射图谱和SEM扫描图片的分析,认为高效活性矿物掺和料能够提高超高强水泥浆体的水化程度,改善C-S-H凝胶的质量,增加C-S-H凝胶的数量,削弱CH的负面影响,从而提高混凝土的强度和耐久性。
5)  super-fine minerals admixture
超细矿物掺和料
1.
By study on the development tendency of green high performance concrete,conclusion may be drawn that mixing with high performance wa ter re ducer and super-fine minerals admixture is a de-velop ment basis of mod ern high performance cement materials;high flu-idity and high dura bility are the special feature of it;self-compacting and high strength concrete are the direction of its development.
研究高性能混凝土和绿色高性能混凝土的现状与发展趋势后可以得出结论:掺加高性能减水剂和超细矿物掺和料的高性能混凝土是现代高性能水泥基材料的发展基础,高流动性和高耐久性是高性能混凝土发展的自身特点,自密实混凝土和高强混凝土是混凝土发展的方向。
6)  addition of finer mineral additives
掺细矿物掺合料
补充资料:EM208型矿物微束分析透射电镜


EM208型矿物微束分析透射电镜


  呱EM208·····…… ..鞘麟翼:
  
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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