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Flexural Static Energy of Steel Fiber Rubberized Concrete Beams with Layered Distribution

机译:层状分布的钢纤维橡胶混凝土梁的弯曲静能

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In this study, an investigation on the effect of crumb rubber aggregate on flexural performance of plain and steel fiber concrete was presented. Two replacement volumes of sand by crumb rubber were selected as 5% and 15%. The content of steel fiber in fibrous concrete was 0.5% (39 kg/m3). The flexural performance of the concrete mixtures was evaluated in terms of flexural energy under static load. For each mixture, three beams were prepared for flexural test under three points loading. In addition, for each batch three beams with same mix proportion were prepared using the layered distribution of concrete. A bottom layer was prepared using plain concrete, while the top layer was prepared using rubberized concrete. For the layered steel fiber rubberized concrete beams, the bottom layer was prepared with steel fiber concrete while the top layer has varied rubber content. The inclusion of rubber aggregate in plain and steel fiber concrete showed a decline in the mechanical strength while an improvement in static the flexural energy was observed in comparison with reference mixes (plain and steel fiber concrete). The layered distribution of rubberized concrete also showed good synergy with steel fiber concrete. The utilization of rubberized concrete is required to enhance the energy absorption capacity as well as a solution of problem of discarded tire.
机译:在这项研究中,研究了碎屑橡胶骨料对普通和钢纤维混凝土抗弯性能的影响。选择用碎屑橡胶代替沙子的两个体积分别为5%和15%。纤维混凝土中钢纤维的含量为0.5%(39 kg / m3)。根据静态载荷下的挠曲能评估混凝土混合物的挠曲性能。对于每种混合物,准备了三根梁在三点载荷下进行挠曲测试。另外,对于每批,使用混凝土的分层分布制备具有相同混合比例的三根梁。底层是用普通混凝土制备的,而顶层是用涂橡胶的混凝土制备的。对于层状钢纤维涂橡胶的混凝土梁,底层由钢纤维混凝土制成,而顶层的橡胶含量变化。与参考混合料(普通和钢纤维混凝土)相比,在普通和钢纤维混凝土中包含橡胶骨料显示出机械强度的下降,而观察到静态挠曲能的提高。橡胶混凝土的层状分布也显示出与钢纤维混凝土的良好协同作用。需要使用涂橡胶的混凝土来提高能量吸收能力以及解决轮胎报废的问题。

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