Heshmat Mohamed, Amer Ismail, Elgabbas Fareed, Khalaf Mohamed A
Structural Engineering Department, Faculty of Engineering, Ain Shams University, Cairo, Egypt.
Sci Rep. 2024 Jun 12;14(1):13502. doi: 10.1038/s41598-024-63214-5.
Alkali Activated Slag Concrete (AASC) has been a sustained research activity over the past two decades. Its promising characteristics and being environmentally friendly compared to Ordinary Portland Cement made AASC of exceptional interest. However, there is still no firm mix design, for the AASC, that can provide desirable fresh and hardened properties based on the composition of the binder and activator. This research specifically aims to investigate the affecting parameters on the slump and compressive strength of alkali-activated slag/lime-based concrete and provide a better understanding of the potential reasons for these characteristics. The experimental program consisted of two stages; the first stage studied the effect of different binder and activator compositions, and the second stage studied the water-to-binder ratio and binder content effects on the slump and compressive strength of alkali-activated slag/lime-based concrete. The binder and activator compositions were defined through two main parameters, the hybrid factor (HF = CaO/SiO + AlO) and the solution modulus (Ms = SiO/NaO). The compressive strength, initial slump, and slump loss were measured to evaluate the different mixes and specify the optimum range of compositions. Based on the studied parameters, the effective range to achieve desirable slump and concrete compressive strength is from HF 0.6 up to 0.8 at Ms 1.5, this would achieve a compressive strength of more than 30 MPa and a slump of 100 mm after 90 min.
在过去二十年中,碱激发矿渣混凝土(AASC)一直是持续的研究对象。与普通硅酸盐水泥相比,其具有令人瞩目的特性且环保,这使得碱激发矿渣混凝土格外引人关注。然而,对于碱激发矿渣混凝土而言,仍没有一种基于胶凝材料和激发剂组成的、能提供理想新拌性能和硬化性能的可靠配合比设计。本研究的具体目的是研究影响碱激发矿渣/石灰基混凝土坍落度和抗压强度的参数,并更好地理解这些特性产生的潜在原因。试验计划包括两个阶段;第一阶段研究不同胶凝材料和激发剂组成的影响,第二阶段研究水胶比和胶凝材料用量对碱激发矿渣/石灰基混凝土坍落度和抗压强度的影响。胶凝材料和激发剂组成通过两个主要参数来定义,即混合因子(HF = CaO/SiO₂ + Al₂O₃)和溶液模量(Ms = SiO₂/Na₂O)。测量抗压强度、初始坍落度和坍落度损失以评估不同配合比,并确定最佳组成范围。基于所研究的参数,在Ms为1.5时,实现理想坍落度和混凝土抗压强度的有效范围是HF从0.6到0.8,这将在90分钟后实现超过30MPa的抗压强度和100mm的坍落度。