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Axial compressive behavior of ultra-high-strength steel fiber-reinforced concrete-filled fiber reinforced polymer (FRP) tube columns

机译:超高强度钢纤维钢纤维混凝土纤维增强聚合物(FRP)管柱的轴流压缩行为

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This study presents the results of the first experimental research on the axial compressive behavior of ultra-high-strength steel (UHSS) fiber reinforced concrete-filled FRP tubes (UHSSFR-CFFT). 24 circular UHSSFR-CFFT specimens were prepared and tested under axial compression to study the influence of unconfined concrete strength and fiber type. CFFTs were manufactured with glass, carbon and basalt reinforced polymer (GFRP, CFRP and BFRP) tubes with concrete compressive strengths (f'(co)) ranging from 35 to 105 MPa. Axial and lateral behavior were examined closely, including variation of lateral behavior along height of specimen. The results showed that the influence of concrete compressive strength on axial compressive behavior of UHSSFR-CFFTs is dependent on fiber type. For a similar normalized lateral confining pressure of FRP jacket at ultimate (f(lu)/f'(co)), axial stress enhancement ratios (k(1)) were observed to decrease with an increase in f'(co) for all three fiber types. On the other hand, the obtained axial strain enhancement ratios (k(2)) indicated that k(2) is influenced more by f(lu)/f'(co) than f'(co). Comparison of the recorded values of k(1) and k(2) for UHSSFR-CFFT with FRP-confined plain concrete showed similar trends on the influence of (f'(co)) on k(1), but an opposite trend was observed for k(2) of BFRP-confined specimens of the current study, in which k(2) increased with increasing f'(co). The results showed that the shape of the lateral strain-to-axial strain curves for UHSSFR CFRP- and BFRP-confined concrete specimens were similar to those of FRP-confined plain concrete, and this relationship was not influenced noticeably by f'(co). Conversely, the obtained shape of the lateral strain-to-axial strain curves for UHSSFR GFRP-confined specimens was noticeably different when compared to FRP-confined plain concrete, with this behavior influenced by f'(co). Finally, the results indicated that the addition of UHSS fibers in CFRP-confined specimens did not alter the influence of f'(co) on strain reduction factor (k(epsilon)) where a decrease was observed by increasing f'(co). However, the converse outcome was observed for GFRP- and BFRP-confined specimens where an increase in k(epsilon) was observed when increasing f'(co).
机译:本研究介绍了超高强度钢(UHSS)纤维纤维混凝土(UHSSFR-CFFT)的轴向压缩行为的第一个实验研究结果。 24圆形UHSSFR-CFFT标本在轴向压缩下制备并测试,以研究无束混凝土强度和纤维型的影响。 CFFTS用玻璃,碳和玄武岩增强聚合物(GFRP,CFRP和BFRP)管制成,具有与35至105MPa的混凝土压缩强度(F'(CO))。密切检查轴向和外侧行为,包括沿标本高度的横向行为的变化。结果表明,混凝土抗压强度对UHSSFR-CFFTS轴向压缩行为的影响取决于纤维型。对于终极(F(Lu)/ F'(Co))的FRP护套的类似归一化横向限制压力,观察到轴向应力增强比(K(1))以减少所有的F'(CO)三种纤维类型。另一方面,所获得的轴向应变增强比(K(2))表明K(2)的影响更多(Lu)/ f'(Co)的影响而不是f'(Co)。使用FRP限制普通混凝土的UHSSFR-CFFT的K(1)和K(2)的记录值的比较显示出(F'(CO))对K(1)的影响的相似趋势,但相反的趋势是观察到目前研究的BFRP限制标本的K(2),其中K(2)随着F'(CO)的增加而增加。结果表明,UHSSFR CFRP和BFRP限制混凝土样本的横向应变对轴向应变曲线的形状与FRP限制普通混凝土的形状类似,并且这种关系不会受到F'(CO)的影响。相反,与FRP限制的普通混凝土相比,在UHSSFR GFRP限制标本的横向应变对轴向应变曲线的横向应变对轴向应变曲线的形状明显不同,该行为受到F'(CO)的影响。最后,结果表明,CFRP限制样本中的UHSS纤维没有改变F'(CO)对应变抑制因子(K(ε)的影响,其中通过增加F'(CO)观察到降低。然而,对于GFRP和BFRP限制标本观察到逆转结果,其中在增加F'(CO)时观察到K(ε)的增加。

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