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粉煤灰和石灰石粉替代低热水泥的水化特性

Hydration Characteristics of Low-Heat Cement Substituted by Fly Ash and Limestone Powder.

作者信息

Kim Si-Jun, Yang Keun-Hyeok, Moon Gyu-Don

机构信息

Department of Plant Architectural Engineering, Kyonggi University, Suwon, Kyonggi-do 16227, Korea.

Department of Architectural Engineering, Kyonggi University, Graduate School, Suwon, Kyonggi-do 16227, Korea.

出版信息

Materials (Basel). 2015 Sep 1;8(9):5847-5861. doi: 10.3390/ma8095277.

Abstract

This study proposed a new binder as an alternative to conventional cement to reduce the heat of hydration in mass concrete elements. As a main cementitious material, low-heat cement (LHC) was considered, and then fly ash (FA), modified FA (MFA) by vibrator mill, and limestone powder (LP) were used as a partial replacement of LHC. The addition of FA delayed the induction period at the hydration heat curve and the maximum heat flow value () increased compared with the LHC based binder. As the proportion and fineness of the FA increased, the induction period of the hydration heat curve was extended, and the increased. The hydration production of Ca(OH)₂ was independent of the addition of FA or MFA up to an age of 7 days, beyond which the amount of Ca(OH)₂ gradually decreased owing to their pozzolanic reaction. In the case of LP being used as a supplementary cementitious material, the induction period of the hydration heat curve was reduced by comparison with the case of LHC based binder, and monocarboaluminate was observed as a hydration product. The average pore size measured at an age of 28 days was smaller for LHC with FA or MFA than for 100% LHC.

摘要

本研究提出了一种新型粘结剂,作为传统水泥的替代品,以降低大体积混凝土构件中的水化热。作为主要胶凝材料,考虑使用低热水泥(LHC),然后使用粉煤灰(FA)、经振动磨改性的粉煤灰(MFA)和石灰石粉(LP)作为LHC的部分替代品。粉煤灰的加入延长了水化热曲线的诱导期,与基于LHC的粘结剂相比,最大热流值()增加。随着粉煤灰比例和细度的增加,水化热曲线的诱导期延长,且增加。在7天龄期之前,Ca(OH)₂的水化产物与粉煤灰或MFA的添加无关,超过7天龄期后,由于其火山灰反应,Ca(OH)₂的量逐渐减少。在使用LP作为辅助胶凝材料的情况下,与基于LHC的粘结剂相比,水化热曲线的诱导期缩短,且观察到单碳铝酸盐作为水化产物。对于含有粉煤灰或MFA的LHC,28天龄期时测得的平均孔径比100%LHC的平均孔径小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fefa/5512657/e2d6892bc630/materials-08-05277-g001.jpg

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