Bamshad Omid, Mahdikhani Mahdi, Ramezanianpour Amir Mohammad, Maleki Zahra, Majlesi Arsalan, Habibi Alireza, Delavar Mohammad Aghajani
Department of Civil Engineering, Imam Khomeini International University, Qazvin, Iran.
School of Civil Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Heliyon. 2023 May 19;9(6):e16381. doi: 10.1016/j.heliyon.2023.e16381. eCollection 2023 Jun.
Concrete is the most consumed material in the construction industry. Using recycled aggregates (RA) and silica fume (SF) in concrete and mortar could preserve natural aggregates (NA) and reduce CO emissions and construction and demolition waste (C&DW) generation. Optimizing the mixture design based on both fresh and hardened properties of recycled self-consolidating mortar (RSCM) has not been performed. In this study, multi-objective optimization of mechanical properties and workability of RSCM containing SF was performed via Taguchi Design Method (TDM) with four main variables including cement content, W/C ratio, SF content and superplasticizer content at three different levels. SF was used to decrease the environmental pollution caused by cement production as well as compensating the negative effect of RA on the mechanical properties of RSCM. The results revealed that TDM could appropriately predict the workability and compressive strength of RSCM. Also, mixture design containing W/C = 0.39, SF = 6%, cement = 750 kg/m and SP = 0.33% was found as the optimum mixture having the highest compressive strength and acceptable workability as well as low cost and environmental concerns.
混凝土是建筑行业中消耗量最大的材料。在混凝土和砂浆中使用再生骨料(RA)和硅灰(SF)可以保护天然骨料(NA),减少碳排放以及建筑拆除废物(C&DW)的产生。基于再生自密实砂浆(RSCM)的新拌性能和硬化性能对其配合比设计进行优化尚未开展。在本研究中,通过田口设计方法(TDM)对含硅灰的再生自密实砂浆的力学性能和工作性进行了多目标优化,四个主要变量包括水泥用量、水灰比、硅灰用量和高效减水剂用量,各变量设置三个不同水平。使用硅灰以减少水泥生产造成的环境污染,并补偿再生骨料对再生自密实砂浆力学性能的负面影响。结果表明,田口设计方法能够适当地预测再生自密实砂浆的工作性和抗压强度。此外,水灰比为0.39、硅灰为6%、水泥为750 kg/m且高效减水剂为0.33%的配合比设计被发现是最佳配合比,具有最高的抗压强度、可接受的工作性以及低成本和环境友好性。