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Ultra-High Early Strength Cementitious Grout Suitable for Additive Manufacturing Applications Fabricated by Using Graphene Oxide and Viscosity Modifying Agents

机译:超高的早期强度水泥灌浆适用于使用石墨烯氧化物和粘度改性剂制造的添加剂制造应用

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摘要

One of the considerable challenges in the design of cementitious mixtures for additive manufacturing/three-dimensional (3D) printing applications is achieving both suitable fresh properties and significant mechanical strengths. This paper presents the use of graphene oxide (GO) as a promising nano reinforcement material with the potential to improve the printing feasibility and quality of a 3D printed cementitious matrix. Additionally, in this study, a viscosity modifying agent (VMA) was employed as a chemical additive to attain the required consistency and flow. The printed mixture was fabricated using various cementitious materials and waste materials. This study investigated the impact of GO and VMA on the enhancement of the 3D printing of cementitious composites through several tests. A flow test was conducted using the flow table test. The results showed a high fluidity and practical consistency, which are essential for nozzle pumping and accurateness in printed shapes. Furthermore, the bleeding test showed minimal bleeding up to hardening, and a considerable self-cleaning ability was noted during handling when conducting examinations of fresh properties. For hardened properties, the mechanical strengths were exceptionally high, especially at early ages, which is crucial for the stability of sequence layers of printed composites. The tensile strengths were 3.77, 10.5, 13.35, and 18.83 MPa at 1, 3, 7, and 28 days, respectively, and the compressive strengths were 25.1, 68.4, 85.6, and 125.4 MPa at 1, 3, 7, and 28 days, respectively. The test results showed the effectiveness of the fabricated cementitious mixture design method for meeting the requirements for 3D concrete printing applications.
机译:添加剂制造/三维(3D)印刷应用的水泥混合物设计中的相当大挑战是实现合适的新鲜特性和显着的机械强度。本文介绍了石墨烯氧化物(GO)作为有前途的纳米增强材料,具有提高3D印刷水泥基质的印刷可行性和质量。另外,在本研究中,使用粘度改性剂(VMA)作为化学添加剂以获得所需的稠度和流动。使用各种水泥材料和废料制造印刷的混合物。本研究研究了Go和VMA对通过几次测试提高水泥复合材料的增强的影响。使用流动表测试进行流动测试。结果显示出高流动性和实用的一致性,这对于印刷形状的喷嘴泵送和精度至关重要。此外,出血试验显示出硬化最小的出血,并且在处理新特性检查时处理相当大的自清洁能力。对于硬化性能,机械强度特别高,特别是在早期的年龄,这对于印刷复合材料的序列层的稳定性至关重要。拉伸强度分别为3,3,7和28天的3.77,10.5,13.35和18.83MPa,并且压缩强度为25.1,68.4,85.6和1,3,7和28天的125.4MPa , 分别。试验结果表明,用于满足3D混凝土印刷应用的要求的制造水泥混合物设计方法的有效性。

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