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Compressive Strength and Dimensional Accuracy of Portland Cement Mortar Made Using Powder-Based 3D Printing for Construction Applications

机译:基于粉末的施工应用粉底砂浆抗压强度和尺寸精度

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An innovative methodology has recently been developed by the authors of this study for geopolymer formulations for the requirements and demands of commercially available powder-based 3D printers.In this study,the formulation is extended to conventional Portland cement to expand the scope of printable materials that can be used in the commercially available powder-based 3D printers for construction applications.A Portland cement-based powder composed of Portland cement,amorphous calcium aluminate and fine silica sand was developed for powder-based 3D printing process.Effects of different printing parameters including binder saturation level(100%,135% and 170%)and shell to core ratio(1:1 and 1:2)on dimensional accuracy and compressive strength of the green specimens have been investigated.A compressive strength of up to 8.4 MPa was achieved for the’green’3D printed samples before any post-processing process.The results indicated that the increase in the binder saturation level and the change in the Shell/Core ratio from 1:1 to 1:2 significantly increased the compressive strength,but considerably reduced the Enear dimensional accuracy of the green samples.The compressive strength and linear dimensional accuracy of the green samples exhibited an anisotropic behavior,depending on the testing direction.
机译:最近由本研究的作者开发了一种创新的方法,该研究对于地质聚合物配方,用于商业上可获得的粉末3D打印机的要求和要求。本研究,该研究扩展到传统的波特兰水泥,扩大可打印材料的范围可用于市售的基于粉末的3D打印机,用于施工应用。为粉末的3D印刷过程开发了由波特兰水泥,无定形铝酸钙和细硅砂组成的波特兰水泥基粉末。不同的印刷参数的影响已经研究了粘合剂饱和水平(100%,135%和170%)和核心比(1:1和1:2)的尺寸准确度和绿色标本的抗压强度的壳体。高达8.4MPa的抗压强度是在任何后处理过程之前对“绿色的3D印刷样本”。结果表明粘合剂饱和度和CH的增加壳/芯比的沿1:1至1:2显着提高了抗压强度,但显着降低了绿色样品的透明尺寸精度。绿色样品的抗压强度和线性尺寸精度表现出各向异性行为,取决于各向异性行为在测试方向上。

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