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Material characteristics of binder jet 3D printed hydrated CSA cement with the addition of fine aggregates

机译:粘合剂喷射3D印刷水合CSA水泥的材料特性,加入精细聚集体

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Recent advances in additive manufacturing technologies for cementitious construction have mainly focused on low resolution fused deposition methods, herein the authors aim to advance high resolution binder jet printing methods. The inherent challenge of additive binder jet cement-based printing is to achieve adequate mechanical strengths and maintain geometry without the agitation and casting of conventional fabrication. The authors utilize a commercially available binder jet printer to fabricate sample specimens that are used to assess material and geometric properties. A novel water-based binder formulation, compatible with concrete chemistry and piezoelectric jetting, is developed. This study examines a dry cementitious mix comprised of round grain fine aggregates and calcium sulfoaluminate (CSA) cement. The printed samples have a density of 1474-1501 kg/m(3), 28-day compressive strengths of 5.94-6.70 MPa, and flexural strengths of 1.76-2.39 MPa. The results indicate that binder jet printed CSA cement with the addition of fine aggregates possess the strength and the resolution to produce high detail objects with rapid production capability and compatibility in applications with conventional construction materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:添加剂制造技术的最新进展主要集中于低分辨率融合沉积方法,本文旨在推进高分辨率粘合喷射印刷方法。添加剂粘合剂喷射水泥基印刷的固有挑战是实现足够的机械强度并保持几何形状而无需搅拌和铸造常规制造。作者利用市售的粘合剂喷射打印机来制造用于评估材料和几何特性的样品样品。开发了一种与混凝土化学和压电喷射相容的新型水基粘合剂制剂。该研究检查了由圆形细聚集体和磺碱酸钙(CSA)水泥组成的干水泥混合物。印刷样品的密度为1474-1501千克/米(3),28天压缩强度为5.94-6.70MPa,弯曲强度为1.76-2.39MPa。结果表明,粘合剂喷射印刷的CSA水泥加入精细聚集体具有强度和分辨率,以产生具有快速生产能力和传统建筑材料应用中的高细节对象的强度和分辨率。 (c)2019 Elsevier Ltd.保留所有权利。

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