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EXPERIMENTAL STUDY OF FLEXURAL BEHAVIORS ON REINFORCED REACTIVE POWDER CONCRETE RECTANGULAR BEAMS

机译:钢筋混凝土矩形梁弯曲行为的实验研究

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By four-point loading method, the flexural experiments of reinforced reactive powder concrete (RPC) rectangular beams with reinforcement rate 0%, 1.11%, 1.97% were carried out. The flexural load and midspan deflection curves were obtained. Experimental results show that: (1) Although there is only one crack on the destroyed RPC beam, reinforced RPC rectangular beams show remarkable failure characteristics of suitable-reinforced beam because of steel fibers' cracking resistance. (2) The cracking loads of RPC rectangular beams with different reinforcement ratios are approximately equal, so reinforcement ratio has little effect on cracking load of RPC beams. (3) Yielding load and ultimate load of RPC beam have been significantly increased with improving reinforcement ratio. The ductility performances are also improved. (4) Because of the ultra-high compressive strength of RPC, the height of section's compression zone is very small for RPC beams with conventional reinforcement rate. Therefore, the tension reinforcement yields usually at a load less than the ultimate load, and the failure mode of over-reinforced beam can't appear. (5) The equations of flexural design for reinforced RPC rectangular section are proposed.
机译:通过四点装载方法,加强速率增强率的钢筋混凝土(RPC)矩形梁的弯曲实验0%,1.11%,1.97%。获得弯曲载荷和中跨偏转曲线。实验结果表明:(1)虽然被破坏的RPC束上只有一个裂缝,但由于钢纤维的裂化阻力,增强的RPC矩形梁显示出合适的加强梁的显着失效特性。 (2)具有不同增强比的RPC矩形梁的开裂载荷大致相等,因此增强比对RPC梁的裂化负荷几乎没有影响。 (3)随着增强比率提高,RPC光束的产生负荷和最终负荷已经显着增加。延展性性能也得到改善。 (4)由于RPC的超高抗压强度,截面的压缩区的高度对于具有传统增强速率的RPC梁非常小。因此,张力增强件通常在厚度小于最终负载的负载,并且不能出现过增强梁的故障模式。 (5)提出了增强RPC矩形截面弯曲设计方程。

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