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The Role of Various Powders during the Hydration Process of Cement-Based Materials

机译:各种粉末在水泥基材料水合过程中的作用

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摘要

The role of various powders including glass powder (GP), limestone powder (LP), and steel slag powder (SSP) during the hydration process of cement-based materials was investigated by using X-ray diffraction (XRD), thermogravimetric and differential thermal analysis (TG-DTA), scanning electron microscopy (SEM), and strength tests. GP has adverse impact on early strength, but the pozzolanic reaction at later stage enhances the strength development greatly. LP can significantly improve early strength. SSP has a good contribution to the early and later strength of the paste when its content is less than 15%. GP has little effect on the kind of hydration products but relatively large effects on the quantity. Calcium hydroxide (CH) content of GP paste decreases over curing age gradually, which is different from pure cement paste because its pozzolanic activity consumes more CH than that generated from the cement hydration. SSP and LP mainly play a role of filling effect at early stage. Nucleating effect of LP also promotes the early hydration of cement. The hydration of LP occurs at later stage and forms the calcium carboaluminate hydrates. The hydration of SSP is relatively slow, which generates CH at later stage and is effective in the strength development.
机译:通过使用X射线衍射(XRD),热重衍射和差动热,研究了包括玻璃粉末(GP),石灰石粉末(LP),石灰石粉末(LP),石灰石粉末(LP)和钢渣粉(SSP)的各种粉末的作用,分析(TG-DTA),扫描电子显微镜(SEM)和强度试验。 GP对早期强度产生不利影响,但在后期的波佐静反应大大提高了强度发展。 LP可以显着提高早期强度。当其含量小于15%时,SSP对糊剂的早期和后后强度具有良好贡献。 GP对水合产物的种类影响几乎没有影响,但对数量相对较大。氢氧化物(CH)的GP浆料含量逐渐降低固化年龄,这与纯水泥浆料不同,因为其Pozzolanic活性消耗更多的CH,而不是从水泥水合产生的CH。 SSP和LP主要发挥早期填充效果的作用。 LP的成核效果还促进了水泥的早期水合。 LP的水合在后期发生并形成碳酸钙水合物。 SSP的水合相对较慢,在后期阶段产生CH,在强度发展方面是有效的。

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