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Torsional behaviour of reinforced concrete beam wrapped with aramid fiber

机译:芳纶纤维包裹钢筋混凝土梁的抗扭性能

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Present study gives the torsional behaviour of Reinforced Concrete (RC) beam of M30 grade of concrete strengthened with aramid fiber. The aramid fiber as an externally bonded reinforcement used for increasing flexural strength, an attempt is made to use it for improving torsional behaviour of RC beam. Torsional failure mostly occurs in seismic affected areas subjected to sudden failure. Torsional failure is brittle type failure occurs due to undesirable loading.RC beam strengthened with aramid fiber tested for torsional moment using lever arms subjected to equal static loading which transfer equal torsional moment to the beam. The cross section of beam is 150?mm?×?300?mm and of 1?m in length. In that three beams were designed for torsional reinforcement and nine as conventional beams. Beam is designed for torsion as per IS456-2000. Building designed earlier using the codes were insufficient to cater for torsional reinforcement. This research investigates behaviour of such conventional beams for torsion when wrapped with aramid fiber. Torsional moments of such strengthened beams are compared with torsionally designed beams which are designed as per new design codes. The study is restricted to aramid fiber fully wrapped and wrapped in strips at width 100?mm of U shape on three faces of beam by using epoxy resin.Experimental result includes ultimate loads & first cracking loads, angle of twist and twisted shape of the beam. Result shows that fully wrapped RC beam gives more torsional strength as compared to controlled beam and there is significant improvement in torsional strength of beams wrapped in strips. After first crack, beam shows tendency to carry load with increase in angle of twist. Thus it is easy method for strengthening of RC beams.
机译:本研究给出了芳纶纤维增强的M30级混凝土的钢筋混凝土(RC)梁的抗扭性能。芳族聚酰胺纤维作为用于提高抗弯强度的外部粘结增强材料,试图将其用于改善RC梁的扭转性能。扭转破坏主要发生在遭受突然破坏的地震影响区域。扭转破坏是由于不希望的载荷而导致的脆性破坏。使用芳纶纤维增强的RC梁,在承受相等静态载荷的杠杆臂的作用下,进行了扭转力矩测试,将相等的扭转力矩传递给梁。横梁的横截面为150?mm?×?300?mm,长度为1?m。在这种情况下,设计了三根用于扭转加固的梁,而九根作为常规梁。根据IS456-2000,梁经过扭力设计。早先使用该规范设计的建筑物不足以应付抗扭加固。这项研究调查了用芳纶纤维包裹这种传统的梁的扭转性能。将这种加强梁的扭转力矩与按照新设计规范设计的扭转设计梁进行比较。这项研究仅限于使用环氧树脂将芳纶纤维完全包裹并以U形宽度100?mm的条状包裹在梁的三个面上,实验结果包括梁的极限载荷和初次开裂载荷,扭曲角度和扭曲形状。结果表明,与受控梁相比,完全包裹的RC梁具有更大的扭转强度,并且条状包裹的梁的扭转强度有了显着提高。第一次开裂后,梁表现出随扭转角增加而承受载荷的趋势。因此,这是一种加固RC梁的简便方法。

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