High energy milling of tricalcium silicate

High energy milling of tricalcium silicate
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硅酸三钙的高能研磨

DOI:
10.1016/j.cemconres.2019.03.015
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发表时间:
2019
影响因子:
11.4
通讯作者:
Ludwig
Ludwig
中科院分区:
工程技术1区
文献类型:
--
作者:
Reformat;Bellmann;Ludwig

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混凝土比任何其他建筑材料更能塑造现代土木工程的方式。它是除了水之外世界上最常用的东西。这一特殊的位置是由于其卓越的性能,这是影响,除其他事项外,所使用的水泥。水泥加水后发生反应,与骨料一起形成“人造石”,既具有生命力,又能抵抗各种破坏作用。硅酸盐三钙(ca3sio5,简称c3s)是硅酸盐水泥的主要相,平均占质量的60%,对水泥水化动力学以及混凝土的早期强度和微观结构发展有着决定性的影响。硅酸三钙与水反应的主要产物是硅酸三钙-水合相(CSH)和硅酸盐(Ca (OH) 2)。图1显示了水泥和水化石的主要阶段。
Concrete shapes the modern way of civil engineering more than any other building material. It is besides water the most used good of the world [1]. This extraordinary position is due to its outstanding properties, which are influenced, among other things, by the cement used. Cement reacts after the addition of water and, together with the aggregate, forms an “artificial stone”, which is both viable and resistant to various damage effects.Tricalcium silicate (Ca 3 SiO 5, in short: C 3 S) is the main phase of Portland cement with an average share of 60% by mass and is decisively influencing the kinetics of cement hydration and thus the early strength and microstructure development of concrete. The main products of the reaction of tricalcium silicate and water are calcium-silicate-hydrate phases (CSH) and portlandite (Ca (OH) 2). Fig. 1 shows the main phases of the cement and alite hydration.
DOI: 10.1016/j.cemconres.2015.06.005
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