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Printability, accuracy and strength of geopolymer made using powder-based 3D printing for construction applications

机译:使用基于粉末的3D打印在建筑应用中制成的地聚合物的可印刷性,准确性和强度

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摘要

The authors of this study have recently succeeded to develop geopolymer materials using slag only formulations for the requirements and demands of commercially available powder-based 3D printers. In this study, the formulation is extended to fly ash and slag combinations so that to expand the scope of geopolymer materials that can be used in the commercially available powder-based 3D printers for construction applications. The quantitative influence of fly ash content on the printability characteristics (i.e., depositability and wettability) of the geopolymer powder, as well as the linear dimensional accuracy and compressive strength of the printed specimens were investigated. The effect of type of alkaline solution used for post-processing on the linear dimensional accuracy and compressive strength of the post-processed specimens were also evaluated. The results indicated that the increase in fly ash content had no effect on the powder depositability, but adversely affected the powder wettability, linear dimensional accuracy and compressive strength of the printed specimens. The minimum slag content required to prepare fly ash/slag blended geopolymer powder for powder-based 3D concrete printing process is 50 wt%. The post-processing significantly increased the compressive strength. The post-processed specimens printed with 50 wt% slag/50 wt% fly ash powder exhibited a 7-day compressive strength of up to 25 MPa, which is sufficiently high for many construction applications.
机译:这项研究的作者最近成功地开发了仅使用矿渣配方的地聚合物材料,以满足市售粉末状3D打印机的需求。在这项研究中,该配方扩展到了粉煤灰和矿渣的组合,从而扩大了可用于市售粉末状3D打印机以用于建筑应用的地聚合物材料的范围。研究了粉煤灰含量对地质聚合物粉末可印刷性特征(即可沉积性和润湿性)以及印刷样本的线性尺寸精度和抗压强度的定量影响。还评估了用于后处理的碱性溶液类型对后处理样品的线性尺寸精度和抗压强度的影响。结果表明,粉煤灰含量的增加对粉末的沉积性没有影响,但对粉末的润湿性,线性尺寸精度和抗压强度产生不利影响。制备用于粉基3D混凝土打印过程的粉煤灰/矿渣掺混地质聚合物粉末所需的最小矿渣含量为50 wt%。后处理显着增加了抗压强度。用50%(重量)的炉渣/ 50%(重量)的粉煤灰粉末印刷的后处理样品显示出高达25 MPa的7天抗压强度,对于许多建筑应用而言足够高。

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