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Unraveling pore structure alternations in 3D-printed geopolymer concrete and corresponding impacts on macro-properties

机译:揭示3D打印地质聚合物混凝土的孔隙结构变化及其对宏观性能的影响

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Extrusion-based 3D-printed concrete (3DPC) structures are reported to hold mechanical anisotropy behaviors and weak transport properties compared with cast concrete. Fundamental insights into the pore structure discrepancy between printed and cast concrete are essential to the performance prediction and improvement strategy for 3DPC. This study analyzes the pore structure alternations in 3D-printed geopolymer concrete (3DPGC) with cast ones as the reference. Several pore characteristics, i.e., pore volume, distribution, specific surface area (SSA), shape and connectivity are investigated via X-ray CT and MIP. The results demonstrate that a larger porosity, coarser pore size distribution and higher pore SSA exist in 3DPGC compared with CGC. The coarser pore size distribution respectively lies in large voids (>0.2 mm) and small pores (<400 nm) for printed concrete. The pulling stress applied by nozzle movements during the extrusion process contributes to the pore elongation of printed concrete. The mechanical anisotropy of printed concrete without fibers originates from two factors: (i) Oriented pore elongation induces the discrepancy in stress concentration and deformation, and (ii) The weak interlayer presence may cause sliding between layers during loading. However, the pore elongation effect decays with the pore size reduction, limiting its impact on mechanical-anisotropic behaviors. Targeted strategies are then proposed for the matrix strengthening and mechanical anisotropy mitigation in printed concrete.
机译:Extrusion-based 3 d打印的混凝土(3 dpc)将机械结构各向异性行为和疲软的运输属性与混凝土铸件。基本见解孔隙结构印刷和混凝土铸件之间的差异性能预测和必不可少的3 dpc改进策略。分析了孔隙结构交替3 d打印的地质聚合物混凝土(3 dpgc)的作为参考。特点,即孔隙体积、分布、比表面积(SSA),形状和通过x射线CT和连通性研究MIP。孔隙度、孔隙大小分布和变粗高孔隙SSA存在于3 dpgc相比之下,公司治理文化。粗孔隙大小分布在于大孔隙(> 0.2毫米)和小孔(< 400海里)印刷混凝土。应用的压力喷嘴运动期间挤压过程导致了孔隙伸长的混凝土。各向异性的印刷没有纤维混凝土源于两个因素:(i)的孔隙伸长引起压力的差异浓度和变形,(ii)疲软夹层的存在可能会导致之间的滑动在加载层。伸长的影响与孔隙大小衰减减少,限制其影响mechanical-anisotropic行为。然后提出了矩阵策略加强和力学各向异性缓解在印刷混凝土。

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