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Fatigue performance of anchorage for CFRP tendons affected by water infiltration

机译:水渗透影响CFRP肌腱锚固性能的疲劳性能

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This study is concerned with the effect of moisture on the fatigue performance of the anchorage for CFRP tendons. Series of tests were carried out on the pre-conditioned adhesively bonded anchorages and wedge-bonded anchorages so as to investigate the fatigue behavior of anchorages under different moisture and loading conditions. The structural responses of the moisture-conditioned anchorages were analyzed during cyclic loading, including the temperature rise in the anchor zone, sleeve strain, tendon slippage, and residual ultimate tensile capacity (UTC). Thereafter, the trend of water infiltration in the anchor zone was inspected. The results show that the structural responses of the anchorage are influenced significantly by the stress ratio and the moisture condition, regardless of whether the anchorage is adhesively bonded or wedge-bonded. Moisture-conditioning leads to the increase of the temperature rise and the tendon slippage. Moisture-conditioned anchorages have a much smaller sleeve strain compared to the dry anchorages under the same cyclic loading conditions. Moreover, a lower the stress ratio will intensify the detrimental effect of moisture-conditioning; thereby resulting in a severer degradation in the UTC. The water absorption of the anchorage is linearly related to the square root of the immersion duration in the early stage of water immersion. The increase of water absorption induces the decrease of Young's modulus and the tensile strength. It consequently weakens the fracture toughness of bonding medium, which accounts for the degradation of the UTC of the anchorage. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究涉及水分对CFRP肌腱锚固疲劳性能的影响。在预调节的粘粘合的锚固和楔形粘合的锚固上进行系列测试,以研究不同的水分和装载条件下锚固疲劳行为。在循环载荷期间分析了水分调节锚固的结构应答,包括锚固区,套管菌株,肌腱滑动和残留最终拉伸能力(UTC)中的温度升高。此后,检查了锚带区的水渗透的趋势。结果表明,无论锚固是否粘接或楔形,锚固的结构应答受到应力比和水分状况的影响。湿度调节导致温度升高的增加和肌腱滑动。与在相同的循环负载条件下的干燥锚固相比,水分调节的锚固株具有更小的套管菌株。此外,应力比率降低了水分调节的不利影响;由此导致UTC中的较严重的降解。锚地的吸水性与水浸早期浸渍持续时间的平方根线性相关。吸水率的增加诱导杨氏模量和拉伸强度的降低。因此,它削弱了粘合培养基的断裂韧性,其占锚固UTC的降解。 (c)2020 elestvier有限公司保留所有权利。

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