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BEHAVIOR OF STEEL FIBRE REINFORCED CONCRETE IN COMPRESSION

机译:钢纤维增强混凝土的受压性能

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摘要

Standard compression tests are conducted on concrete cylinders made with concrete having different amount of steel fibres to investigate compression behaviour of steel fibre reinforced concrete. The effect of volumetric ratio of steel fibres on compressive strength, corresponding peak strain and the compressive stress-strain curve is explored. The test results show that the more the amount of fibres the higher the compressive strain the cylinder can sustain. It is also observed that both compressive strength and the strain corresponding to the peak stress increase with the addition of steel fibres. Interrelationships relating the compressive strength and the corresponding peak strain with the volumetric ratio of steel fibres are established based on the test results. The experimental result also shows that if the compressive stress and strain are normalized with respect to the compressive strength and the peak strain respectively, the resulting normalized stress-strain curves lie close to each other and are not influenced by the fibre content. An equation to represent this unique relationship between the normalized compressive stress and strain is also proposed and verified.
机译:在用不同钢纤维含量的混凝土制成的混凝土圆筒上进行标准压缩试验,以研究钢纤维增强混凝土的压缩性能。探讨了钢纤维的体积比对抗压强度,相应的峰值应变以及压应力-应变曲线的影响。测试结果表明,纤维数量越多,圆柱体可以承受的压缩应变越高。还观察到,随着钢纤维的添加,抗压强度和对应于峰值应力的应变均增加。根据测试结果,建立了抗压强度和相应的峰值应变与钢纤维的体积比之间的相互关系。实验结果还表明,如果分别将压缩应力和应变相对于抗压强度和峰值应变进行归一化,则所得的归一化应力-应变曲线将彼此靠近且不受纤维含量的影响。还提出并验证了表示标准化压缩应力与应变之间这种独特关系的方程式。

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