1) high-flow high-performance concrete
高流态高性能混凝土
2) self-compact high performance concrete
自流平高性能混凝土
1.
Then the recycled aggregates were tried to mix high strength concrete and self-compact high performance concrete.
通过对不同强度等级旧混凝土破碎而成的再生粗骨料与天然粗骨料性能的对比研究,表明再生粗骨料与天然粗骨料性能具有相似性,能够满足行业标准对碎石的性能要求,并尝试将再生粗骨料用于配制高强混凝土和自流平高性能混凝土,结果表明,采用原强度在15-20MPa以上的旧混凝土破碎而成的再生骨科均可用于配制高强混凝土,但配合比相近情况下,原混凝土强度等级越高,再生混凝土各龄期强度越高,其再生利用价值越高。
3) high flowing concrete
高流态混凝土
1.
To solve the problem of concrete placement around the power conduits at the Three Gorges project, it has been decided that a high flowing concrete should be employed, following extensive tests and researches.
为解决引水压力钢管道底部混凝土浇筑问题 ,经过充分试验和研究决定采用高流态混凝土。
2.
The fluidization mechanism of high flowing concrete and its application in high rise frame structures are discussed and analyzed.
对高流态混凝土流态化的机理及在高层框架结构中的应用进行了论述和分析。
4) flowable high strength concrete
流态高强混凝土
1.
Also, being one of the main component, KSF is admixed in the flowable high strength concrete.
研究了以优质粉煤灰为基材的KSF活性矿物掺和材料,并以此作为主要组分,配制了坍落度为180 m m 以上,56 d 平均抗压强度可达100 MPa 左右的流态高强混凝土,通过实验证实了该混凝土具有优异的物理力学性能和耐久性能。
5) high-flowability concrete
高流态混凝土
1.
Since pump high-flowability concrete commenced in late 70 s, it has been put to extensive application due to its advantages of fast, high-efficiency and stable quality.
泵送高流态混凝土自从70年代末期产生以来,以其快速高效、质量稳定等特点得到了广泛的应用,但它的高流动性和可泵性也产生了一些负面作用,如早期收缩开裂现象比较严重,引起了社会的普遍关注。
6) HPC
高性能混凝土
1.
Experimental Study on Volume Stability of HPC by Shrinkage-Reducing Agent;
减缩剂对高性能混凝土体积稳定性影响试验研究
2.
Investigation on mechanical behavior of HPC mixed with fiber after high temperature;
外掺钢纤维对高性能混凝土高温后性能的影响
3.
Aggregative indicator evaluating the durability of HPC:Chloride ion resistance and present status;
评价高性能混凝土耐久性综合指标——抗氯离子渗透性及其研究现状
补充资料:高性能陶瓷
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性质:见精细陶瓷。
分子量:
CAS号:
性质:见精细陶瓷。
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