Kwon Yang-Hee, Kang Sung-Hoon, Hong Sung-Gul, Moon Juhyuk
Department of Architecture & Architectural Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Korea.
Department of Civil and Environmental Engineering, National University of Singapore, 1 Engineering Drive 2, Singapore 117576, Singapore.
Materials (Basel). 2017 Feb 24;10(3):225. doi: 10.3390/ma10030225.
Without using strong alkaline solution or ordinary Portland cement, a new structural binder consisting of fly ash and hydrated lime was hardened through an intensified pozzolanic reaction. The main experimental variables are the addition of silica fume and initial thermal treatment (60 °C for 3 days). A series of experiments consisting of mechanical testing (compressive and flexural strength, modulus of elasticity), X-ray diffraction, and measurements of the heat of hydration, pore structure, and shrinkage were conducted. These tests show that this new fly ash-based mortar has a compressive strength of 15 MPa at 91 days without any silica fume addition or initial thermal treatment. The strength increased to over 50 MPa based on the acceleration of the intensified pozzolanic reaction from the silica fume addition and initial thermal treatment. This is explained by a significant synergistic effect induced by the silica fume. It intensifies the pozzolanic reaction under thermal treatment and provides a space filling effect. This improved material performance can open a new pathway to utilize the industrial by-product of fly ash in cementless construction materials.
无需使用强碱性溶液或普通波特兰水泥,一种由粉煤灰和熟石灰组成的新型结构粘结剂通过强化火山灰反应硬化。主要实验变量是硅灰的添加量和初始热处理(60°C,持续3天)。进行了一系列实验,包括力学测试(抗压强度、抗折强度、弹性模量)、X射线衍射以及水化热、孔隙结构和收缩率的测量。这些测试表明,这种新型粉煤灰基砂浆在91天时,在未添加任何硅灰或进行初始热处理的情况下,抗压强度为15MPa。基于硅灰添加和初始热处理加速了强化火山灰反应,强度提高到了50MPa以上。这是由硅灰引起的显著协同效应所解释的。它在热处理下强化了火山灰反应,并提供了空间填充效应。这种改善的材料性能可以为在无水泥建筑材料中利用粉煤灰这种工业副产品开辟一条新途径。