Xiao Kong, Li Dai, Shicai Chen, Yuan Guo, Zehuan Zhang, Shaojie Wang
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引用次数: 0
摘要
用于三维打印的Kenaf土工聚合物是工农业废弃物综合智能利用的一个有前途的代表。为了探讨原材料配比对打印性能的影响,本文以碱活化剂用量(10 wt.%、15 wt.%、20 wt.%)和磨细高炉矿渣(GGBFS)与粉煤灰(FA)的质量比(15:85、20:80、25:75)为主要变量。结果表明,增加活化剂用量和降低 GGBFS 与 FA 的质量比可改善流动性,调整这两个参数可将流动性调整到合适的范围。此外,与矿粉配比相比,碱活化剂用量对槿麻类土工聚合物干密度的影响更为显著,槿麻类土工聚合物的轻质特性有效提高了印刷试样的形状保持能力。此外,微观结构分析进一步证实,在适当的碱活化剂用量和矿粉配比下,可实现高水平的土工聚合反应,从而产生足够的凝胶产物,形成令人满意的内部结构,并在外部表现为出色的印刷适性和机械强度。最后,建议采用碱活化剂用量为 15 wt.%、GGBFS 与 FA 质量比为 25:75 的配方,以获得令人满意的印刷性能和机械性能。
Effect of activator dosage and mass ratio of GGBFS to FA on 3D printing performance of kenaf geopolymer
Kenaf geopolymer for 3D printing is a promising representative for comprehensive and intelligent utilization of industrial and agricultural wastes. Aiming at exploring the effect of raw materials’ proportion on printing performances, alkali activator dosage (10 wt.%, 15 wt.%, 20 wt.%) and mass ratio of ground granulated blast furnace slag (GGBFS) to fly ash (FA) (15:85, 20:80, 25:75) were adopted as main variables in this paper. Results have shown that increasing the activator dosage and decreasing the mass ratio of GGBFS to FA can improve the flowability, and adjusting these two parameters can tailor the fluidity to a suitable range. Moreover, dry density of kenaf geopolymer was more significantly affected by alkali activator dosage compared with mineral powder ratio, and lightweight characteristic due to kenaf participation effectively improved shape retention ability of printed specimens. Besides, microstructure analysis further confirmed that with appropriate alkali activator dosage and mineral powder ratio, high level of geopolymerization reaction can be achieved to produce enough gel product for a satisfactory internal structure, which externally manifested as excellent printability and mechanical strength. Finally, formula with alkali activator dosage of 15 wt.% and GGBFS to FA mass ratio of 25:75 was recommended for satisfactory printing performance and mechanical properties.
期刊介绍:
Materials and Structures, the flagship publication of the International Union of Laboratories and Experts in Construction Materials, Systems and Structures (RILEM), provides a unique international and interdisciplinary forum for new research findings on the performance of construction materials. A leader in cutting-edge research, the journal is dedicated to the publication of high quality papers examining the fundamental properties of building materials, their characterization and processing techniques, modeling, standardization of test methods, and the application of research results in building and civil engineering. Materials and Structures also publishes comprehensive reports prepared by the RILEM’s technical committees.