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Experimental investigation on the mechanical properties of a bond-type anchor for carbon fiber reinforced polymer tendons

机译:碳纤维增强聚合物筋粘结型锚固材料力学性能的实验研究

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Carbon fiber reinforced polymer (CFRP) has gained popularity in civil engineering applications due to its high tensile strength, light weight, corrosion resistance, and fatigue resistance. However, the anchorage of CFRP tendons has been a challenge due to the relative low transverse shear strength of CFRP. To study the mechanical properties of bond-type anchor for CFRP tendons, straight-type, inner-cone-type, and composite-type anchors were developed in this study. The bond-slip behavior of CFRP tendons inside anchors and multiaxial stresses of the steel sleeve were experimentally tested. The effects of anchor type and length on the anchorage performance of CFRP tendons were studied with the focus on the anchoring mechanism. Test results demonstrate that the composite-type anchor exhibits the most reliable load-transfer mode and can eliminate the notch effect occurred in the inner-cone-type anchor. The peak bond stress initially occurs at the loading end of the anchor and gradually moves to the free end of the anchor as the load increases. This is related to the gradual failure of chemical adhesive between the CFRP tendon and the colloid. Besides, bond-slip relationship of CFRP tendon inside anchor is nonlinear. The slippages of CFRP tendons are initially small but increase quickly with increasing load. When approaching failure, the slippages increased significantly. In addition, the slippage of the anchor with scattered-end tendon is smaller than that with non-scattered-end tendon, indicating that the anchor with scattered-end tendon has superior bonding property.
机译:碳纤维增强聚合物(CFRP)由于其高拉伸强度,轻质,耐腐蚀和耐疲劳性而在土木工程应用中得到了普及。但是,由于CFRP的横向剪切强度较低,因此CFRP筋的锚固一直是一个挑战。为了研究CFRP筋的粘结型锚的力学性能,本研究开发了直型,内锥型和复合型锚。实验测试了锚固件内CFRP筋的粘结滑移行为和钢套管的多轴应力。重点研究了锚固类型和长度对CFRP筋锚固性能的影响。试验结果表明,复合型锚杆表现出最可靠的载荷传递方式,可以消除内锥型锚杆产生的缺口效应。峰值粘结应力最初出现在锚的载荷端,并随着载荷的增加逐渐移至锚的自由端。这与CFRP肌腱和胶体之间的化学粘合逐渐失效有关。此外,锚固件内CFRP筋的粘结滑移关系是非线性的。 CFRP筋的滑移最初很小,但随着载荷的增加而迅速增加。当接近故障时,滑移显着增加。另外,具有散端腱的锚的滑移小于具有非散端腱的锚的滑移,这表明具有散端腱的锚具有优异的粘结性能。

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