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The confining effect of geo-grid on the mechanical properties of concrete specimens with steel fiber under compression and flexure

机译:土工格栅对压缩和弯曲钢纤维混凝土试件力学性能的约束作用

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摘要

An experimental investigation has been carried out for the use of geo-grid as a confinement in concrete specimens with steel fibers. This paper is focused on the confining effect of geo-grid on the mechanical properties of concrete under compression and flexure as well as to examine the bond between geo-grid and concrete. The effect of geo-grid with the steel fiber reinforced concrete (SFRC) has also been investigated. Experimental results indicate that geo-grid may be an effective alternative material to confine the concrete as compared to conventional confining techniques. The axial stress-strain behavior of concrete specimens confined with geo-grid is further improved by the use of SFRC. The performance of cylindrical specimens under split tension also proves the significance of geo-grid confinement with and without steel fibers. The flexure test on beam specimens reveal that the strength of geo-grid and its number of layers play a vital role in improving the load-deformation behavior as well as crack propagation. The stress transfer mechanism of geo-grid under flexure confirms that geo-grid may also be an alternative of tensile reinforcement in reinforced concrete specimens.
机译:已经进行了实验研究,以将土工格栅限制在具有钢纤维的混凝土样品中。本文主要研究土工格栅对压缩和挠曲下混凝土力学性能的限制作用,并研究土工格栅与混凝土之间的粘结性。还研究了土工格栅对钢纤维增强混凝土(SFRC)的影响。实验结果表明,与传统的约束技术相比,土工格栅可能是约束混凝土的有效替代材料。 SFRC的使用进一步改善了受土工格栅约束的混凝土试样的轴向应力-应变性能。圆柱形试样在分张张力下的性能也证明了在有钢纤维和无钢纤维的情况下土工格栅封闭的重要性。梁试样的挠曲测试表明,土工格栅的强度及其层数在改善载荷变形行为以及裂纹扩展方面起着至关重要的作用。土工格栅在挠曲下的应力传递机制证实,土工格栅也可以作为钢筋混凝土试样中抗拉钢筋的替代方法。

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