装配式超高延性混凝土免拆模板梁抗剪性能试验研究

EXPERIMENTAL STUDY ON SHEAR PERFORMANCE OF RC BEAM BUILT BY ASSEMBLED ULTRA-HIGH DUCTILE CONCRETE (UHDC) PREFABRICATED FORMWORK

  • 摘要: 该文提出一种便于制作且方便运输的装配式超高延性混凝土(UHDC)免拆梁模板,并研究采用其制作的梁的抗剪性能。设计9个RC梁试件,通过四点弯曲试验,研究模板形式、模板材料和剪跨比对UHDC免拆模板梁破坏形态、受剪承载力及变形能力的影响。结果表明:相同参数配置下,UHDC免拆模板梁的刚度、剪切开裂荷载和极限抗剪承载力明显高于普通RC梁,但由于发生界面剪切破坏,延性降低;装配式UHDC模板制作的梁的抗剪性能与整体U形模板梁非常接近;在UHDC模板中嵌入碳纤维网格可进一步提高梁的极限抗剪承载力,但提高幅度较小;随着剪跨比的增加,碳纤维网格对UHDC免拆模板梁抗剪承载力的提升幅度减小。最后基于桁架-拱模型,考虑UHDC模板不同破坏模式下的有效抗剪贡献,提出UHDC免拆模板梁的抗剪承载力计算方法。

     

    Abstract: This study proposed a prefabricated ultra-high ductility concrete (UHDC) beam permanent formwork that is easy to produce and transport, and investigated the shear performance of the beams built by UHDC formwork. Nine RC beam specimens were tested by four-point bending test, the effects of formwork form, of formwork material and, of shear span ratio were investigated on the failure mode, on the shear bearing capacity and, on the deformation capacity of beams. The result showed that: Under the same parameter configuration, the stiffness, shear cracking load and ultimate shear bearing capacity of the beams with UHDC formwork were significantly higher than those of ordinary RC beams, but the ductility reduced due to the occurrence of interface shear failure; The shear behavior of the beam with assembled UHDC formwork was very close to that of the beam with integral U-shaped formwork; Embedding carbon grids into UHDC formwork could further improve the ultimate shear bearing capacity of the beam, but the enhancement was relatively small; As the shear span ratio increases, the improvement of the shear bearing capacity caused by carbon mesh decreases. Finally, based on the truss-arch model, considering the effective shear contribution of UHDC formwork under different failure modes, a calculation method for the shear bearing capacity of the beam with UHDC formwork was proposed.

     

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