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Strength and ductility of RC beams strengthened with steel-reinforced strain hardening cementitious composites

机译:钢筋应变硬化水泥基复合材料增强RC梁的强度和延性

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摘要

Strengthening of Reinforced Concrete (RC) beams using strain hardening cementitious composites (SHCCs) layer cast to their soffit has recently been investigated. That work confirmed that strain localization occurs in the SHCC-strengthening layer, which severely limits the ductility of the strengthened beam. This paper reports the ductility enhancement achieved in tests on reinforced concrete beams that were strengthened with lightly steel-reinforced SHCC layer (0.3% and 0.6% steel reinforcement ratio). It has been found that the combination of the SHCC and a small amount of steel reinforcement helps develop higher strain in the SHCC strengthening layer at ultimate load and eliminates the observed early strain localization. The recorded averaged strain at ultimate load of SHCC-strengthening layer provided with 0.3% and 0.6% steel reinforcement was 2.10 and 3.76 times that of an unreinforced SHCC layer. Also, use of a 0.6% reinforcement ratio changed the mode of failure of the SHCC-strengthened beams from brittle to more ductile. Moreover, the SHCC-strengthening layer with 0.6% reinforcement ratio was able to develop uniformly distributed visible cracks, which were the only indication that failure was imminent. It needs to be emphasized that strengthening of RC structures using an unreinforced SHCC layer may lead to a brittle failure.
机译:最近已经研究了使用应变硬化水泥复合材料(SHCC)层浇铸到拱腹的钢筋混凝土(RC)梁的加固方法。这项工作证实了应变局部化发生在SHCC加强层中,这严重限制了加固梁的延展性。本文报告了用轻钢加固的SHCC层(0.3%和0.6%的钢加固率)加固的钢筋混凝土梁在测试中获得的延展性增强。已经发现,SHCC和少量钢增强材料的组合有助于在极限载荷下在SHCC增强层中产生更高的应变,并消除了观察到的早期应变局部化。所记录的具有0.3%和0.6%钢筋的SHCC增强层在极限载荷下的平均应变是未增强的SHCC层的2.10和3.76倍。同样,使用0.6%的增强比可以将SHCC增强梁的破坏模式从脆性变为更易延展。此外,具有0.6%增强率的SHCC加强层能够形成均匀分布的可见裂纹,这是即将发生破坏的唯一迹象。需要强调的是,使用未加固的SHCC层加固RC结构可能会导致脆性破坏。

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