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FLEXURAL STRENGTHENING OF MASONRY MEMBERS USING ADVANCED CEMENTITIOUS MATERIALS

机译:使用先进的水泥质材料对砌体构件进行挠曲加固

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Two different cement based fiber reinforced composites for the flexural strengthening of masonry beams under monotonic loading are studied. Steel Fiber Reinforced Self-Compacting Concrete (SFRSCC) with tensile strain-softening behavior, and PVA fiber reinforced cement based mortar (SHCC) with tensile Strain-Hardening were the developed composites. Both composites were applied on the tensile surface of masonry beams and the effectiveness of this technique for the flexural strengthening of these quasi-brittle structural elements was assessed by performing four point beam bending tests. Both materials contributed effectively to increase the load carrying capacity and ultimate deflection ductility of the tested masonry beams, but, higher average values were obtained for these two indicators of the strengthening effectiveness when using a layer thickness of SHCC that is 2/3 of the thickness of SFRSCC. Furthermore, much more homogenous results, in terms of force-deflection relationship, were obtained with masonry beams strengthened with SHCC than with SFRSCC.
机译:研究了两种不同的水泥基纤维增强复合材料在单调荷载下对砌体梁的抗弯加固。开发了具有拉伸应变软化性能的钢纤维增强自密实混凝土(SFRSCC)和具有拉伸应变硬化的PVA纤维增强水泥基砂浆(SHCC)。两种复合材料均施加在砌体梁的受拉面上,并通过进行四点梁弯曲试验评估了该技术对这些准脆性结构元件进行抗弯加固的有效性。两种材料都有效地提高了测试砌体梁的承载能力和极限挠性,但是,当使用厚度为SHCC的2/3的SHCC层时,这两个强度指标的平均值更高SFRSCC。此外,在力-挠度关系方面,与SFRSCC相比,SHCC加固的砌体梁获得了更为均匀的结果。

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