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Experimental study of steel fiber prestressed concrete beam for shear, bending and torsion

机译:钢纤维预应力混凝土梁的剪切,弯曲和扭转试验研究

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The low tensile strength and limited ductility, the unavoidable deficiency, of concrete can be overcome by the addition of fibres. In this research, an attempt was made to study the effects of flyash and steel fibers on shear, flexural and torsional strength of high strength prestressed concrete and steel fibre prestressed concrete beam specimens. To study the shear, flexural, pure torsion and combined bending-torsion strength behavior, the total 36 beam specimens of size 140mm xl40mm xl500mm were castincluding 12 plain prestressed concrete beam specimens with 20% fly ash replacing to cement by its weight and 24 beam specimens by adding 20% fly ash replacing cement by its weight withl.5% steel fiber by weight of concrete. A primary finding emerging from the experimental program was that the placement of fibers, increased load carrying capacity of high strength fibre reinforced prestressed concrete beam. Steel fibres enhanced ductility, shear, flexural and torsional shear strength. All specimens were tested for single, double point loading, pure torsion, combined bending-torsion after 28 days. Deflections were measured. Experimental, analytical results were compared.
机译:混凝土的低抗拉强度和有限的延展性,不可避免的缺陷,可以通过添加纤维来克服。在这项研究中,试图研究粉煤灰和钢纤维对高强度预应力混凝土和钢纤维预应力混凝土梁试样的抗剪,抗弯和抗扭强度的影响。为了研究剪切,弯曲,纯扭以及组合的弯曲-扭转强度行为,总共铸造了36个尺寸为140mm xl40mm xl500mm的梁试件,其中包括12个普通预应力混凝土梁试件,用其重量代替20%的粉煤灰,以及24个梁试件通过添加20%的粉煤灰代替水泥,其重量为水泥重量的1.5%的钢纤维。从实验程序中得出的主要发现是纤维的放置,提高了高强度纤维增强预应力混凝土梁的承载能力。钢纤维增强了延展性,剪切,弯曲和扭转剪切强度。 28天后测试所有样品的单点,双点载荷,纯扭力,组合弯曲扭力。测量挠度。实验,分析结果进行了比较。

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