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Improving flexural strength and toughness of geopolymer mortars through additively manufactured metallic rebars

机译:通过增材制造的金属钢筋改善地聚合物砂浆的抗弯强度和韧性

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摘要

This paper presents the results of an experimental study on the flexural reinforcement of a geopolymer mortar through additively manufactured metallic rebars. A mortar employing a geopolymer binder with low calcium content fly ash is reinforced with Ti6Al4V rebars additively manufactured though electron beam melting. The effectiveness of reinforcements realized with rebars featuring either smooth or rough surface profiles is studied through three-point bending tests and post-test microscopy analysis. The given experimental results highlight micro and macroscale pullout failure mechanisms in specimens reinforced with rebars showing cylindrical embossments on the lateral surface, which remarkably improve the flexural strength and the interfacial bond strength of the analyzed mortar. The role played by the surface roughness of the reinforced elements on the bond-slip response of the matrix-rebar interface is highlighted, while drawing comparisons with available literature results on cement mortars.
机译:本文介绍了通过增材制造的金属钢筋对地聚合物砂浆进行抗弯加固的实验研究结果。使用通过电子束熔化添加制造的Ti6Al4V钢筋增强了使用低钙粉煤灰的地聚合物粘合剂的砂浆。通过三点弯曲测试和测试后的显微镜分析,研究了具有光滑或粗糙表面轮廓的钢筋实现的增强效果。给出的实验结果突出了用钢筋增强的试样的微观和宏观拉拔破坏机理,这些钢筋在侧面显示出圆柱状压纹,从而显着提高了所分析砂浆的抗弯强度和界面粘结强度。强调了增强元件的表面粗糙度对基体-钢筋界面的粘结-滑移响应的影响,同时与水泥砂浆的现有文献结果进行了比较。

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