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Mechanical properties and bearing capacity of CFRP confined steel reinforced recycled concrete columns under axial compression loading

机译:CFRP紧孔钢加固再生混凝土柱的机械性能和承载力

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To study the axial compression behavior of carbon fiber reinforced plastics (CFRP) confined steel reinforced recycled concrete (CSRRC) columns, 11 specimens of CSRRC columns were manufactured and tested under axial compression loading. The design variables in the experiments included the replacement percentage of recycled coarse aggregate (RCA), layers of CFRP, strength of recycled aggregate concrete (RAC), profile steel ratio and slenderness ratio. Subsequently, the failure process and modes, load-displacement curves, stress-strain curves, transverse deformation coefficient and stiffness degradation of the specimens were obtained and analyzed in detail. The experimental results showed that the profile steel yielded before the steel rebars in the columns, then the RAC was crushed, and finally the CFRP broke under axial compression loading. The axial bearing capacity of CSRRC columns decreased with the increase of replacement percentage of RCA and slenderness ratio, respectively. However, the CFRP can give full play to its high-strength confinement performance and effectively improve the axial bearing capacity and deformability of columns. Moreover, the profile steel ratio and strength of RAC have significant effects on the initial stiffness of CSRRC columns, and the stiffness degradation rate of columns decreases with the increase of these parameters. Overall, the CSRRC columns exhibit high axial bearing capacity and good ductility deformation ability. Based on ACI 440.2R-08, the modified formula on the nominal axial bearing capacity of CSRRC columns was proposed in this study. The accuracy on the modified formulae was evaluated by the comparison between the calculated values and test values.
机译:为研究碳纤维增强塑料(CFRP)限制钢筋再循环混凝土(CSRRRC)柱的轴向压缩行为,在轴向压缩负荷下制造并测试11个CSRRC柱试样。实验中的设计变量包括再生粗骨料(RCA),CFRP层,再循环骨料混凝土(RAC),轮廓钢比和细长比的更换百分比。随后,获得了对试样的破坏过程和模式,负荷 - 位移曲线,应力 - 应变曲线,横向变形系数和刚度降解。实验结果表明,在柱子中的钢钢筋之前产生的轮廓钢,然后将RAC压碎,最后在轴向压缩负载下突破CFRP。 CSRRC柱的轴向承载能力分别随着RCA和细长比的更换百分比的增加而降低。然而,CFRP可以充分发挥其高强度监禁性能,有效地提高柱轴承容量和柱的可变形性。此外,RAC的轮廓钢比率和强度对CSRRC柱的初始刚度具有显着影响,并且柱的刚度降解率随这些参数的增加而降低。总的来说,CSRRC柱具有高轴向承载力和良好的延展性变形能力。基于ACI 440.2R-08,在本研究中提出了CSRRC柱的标称轴向承载能力的改良公式。通过计算值和测试值之间的比较来评估修改式公式的准确性。

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