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Interlayer bonding improvement of 3D printed concrete with polymer modified mortar: Experiments and molecular dynamics studies

机译:聚合物改性砂浆三维印刷混凝土中的层间粘接改进:实验与分子动力学研究

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The inherent weak interfaces between adjacent layers by the laminate stacking process of 3D concrete printing hinder this advanced technique for general engineering applications. In this study, polymer-modified mortars were fabricated to improve the weak interlayer bonding performances. The effects of the setting time of the printed concrete and changes of the interlayer moisture were tested. Both epoxy resin- and chloroprene latex-modified mortars were prepared and used as interlayer interface enhancement materials according to different interlayer intervals. The direct tensile and shear strengths of the polymer mortar-strengthened interfaces were tested and evaluated by the crossover test. Moreover, the effects of the moisture released from the surface of the cement-based composite materials on the interlaminar bonding properties and the enhancing mechanism of the epoxy resin- and chloroprene latex-modified mortars were simulated through molecular dynamics and density functional theory. The results demonstrate that the electrostatic interaction (Coulomb force) between the epoxy resin and calcium ions from hydrated calcium silicate counteracts the weakening effect of water molecules (surface moisture) on the interlaminar bonding, thus improving the interface bonding of printed concrete. The optimal polymer mortar that strengthens the interfaces most effectively was identified.
机译:3D混凝土印刷层压堆叠过程中相邻层之间固有的弱接口阻碍了通用工程应用的这种先进技术。在该研究中,制造聚合物改性的砂浆以改善弱层间粘合性能。测试了印刷混凝土的设定时间和层间水分的变化的影响。根据不同的层间隔制备并用作中间层界面增强材料的环氧树脂和氯丁二烯胶乳改性砂浆。通过交叉试验测试聚合物砂浆强化界面的直接拉伸和剪切强度。此外,通过分子动力学和密度泛函理论模拟了从水泥基复合材料表面释放的水分复合材料表面的影响和环氧树脂和氯丁二丁胶乳改性砂浆的增强机制。结果表明,来自水合钙硅酸钙之间的环氧树脂和钙离子之间的静电相互作用(库仑力)抵消了水分子(表面湿)对层间粘合的弱化效果,从而改善了印刷混凝土的界面粘合。确定最佳的聚合物砂浆最有效地加强界面。

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