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首页> 外文期刊>Polymers >Long-Term Bending Creep Behavior of Thin-Walled CFRP Tendon Pretensioned Spun Concrete Poles
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Long-Term Bending Creep Behavior of Thin-Walled CFRP Tendon Pretensioned Spun Concrete Poles

机译:薄壁CFRP筋预应力细喷混凝土杆的长期弯曲蠕变行为

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This paper discusses the long-term behavior of a series of highly-loaded, spun concrete pole specimens prestressed with carbon fiber-reinforced polymer (CFRP) tendons, which were subjected to outdoor four-point bending creep tests since 1996 in the frame of collaboration with the Swiss precast concrete producer, SACAC (Società Anonima Cementi Armati Centrifugati). The 2 m span cylindrical beams studied are models for lighting poles produced for the last 10 years and sold on the European market. Five thin-walled pole specimens were investigated (diameter: 100 mm; wall-thickness: 25–27 mm). All specimens were produced in a pretensioning and spinning technique and were prestressed by pultruded CFRP tendons. Initially, two reference pole specimens were tested in quasi-static four-point bending to determine the short-term failure moment and to model the short-term flexural behavior. Then, three pole specimens were loaded to different bending creep moments: while the lowest loaded specimen was initially uncracked, the second specimen was loaded with 50% of the short-term bending failure moment and exhibited cracking immediately after load introduction. The highest loaded pole specimen sustained a bending moment of 72% of the short-term bending failure moment for 16.5 years before failing in July 2013, due to the bond failure of the tendons, which led to local crushing of the high-performance spun concrete (HPSC). Besides this, long-term monitoring of the creep tests has shown a limited time- and temperature-dependent increase of the deflections over the years, mainly due to the creep of the concrete. A concrete creep-based model allowed for the calculation of the long-term bending curvatures with reasonable accuracy. Furthermore, the pole specimens showed crack patterns that were stable over time and minimal slippage of the tendons with respect to the pole’s end-faces for the two lower load levels. The latter proves the successful and durable anchorage of these novel CFRP prestressing tendons in thin-walled, precast concrete members under realistic long-term service loads.
机译:本文讨论了一系列由碳纤维增强聚合物(CFRP)预应力预应力而成的高负荷旋转混凝土杆标本的长期性能,这些标本自1996年以来在合作框架下进行了室外四点弯曲蠕变测试与瑞士预制混凝土生产商SACAC(SocietàAnonima Cementi Armati Centrifugati)合作。研究的2 m跨度圆柱光束是最近10年来生产并在欧洲市场出售的灯杆的模型。研究了五个薄壁杆标本(直径:100 mm;壁厚:25–27 mm)。所有标本均采用预拉伸和旋压技术生产,并由拉挤的CFRP筋预应力。最初,在准静态四点弯曲中测试了两个参考极标本,以确定短期破坏力矩并为短期弯曲行为建模。然后,将三个极点试样加载到不同的弯曲蠕变矩上:最初未加载最低载荷的试样时,第二个试样加载了短期弯曲破坏矩的50%,并且在引入载荷后立即出现了开裂。由于钢筋束的粘结破坏,最高载荷的极点试样的弯曲力矩在短期弯曲破坏力矩的72%下弯曲了16.5年,直到2013年7月破裂,这导致了高性能旋转混凝土的局部破碎。 (HPSC)。除此之外,对蠕变试验的长期监测显示,多年来,挠度随时间和温度的变化有限,这主要归因于混凝土的蠕变。基于混凝土蠕变的模型允许以合理的精度计算长期弯曲曲率。此外,在两个较低的载荷水平下,杆试件显示出随时间变化而稳定的裂纹模式,并且筋相对于杆端面的滑移最小。后者证明了这些新颖的CFRP预应力筋在现实的长期服务载荷下在薄壁预制混凝土构件中的成功和持久锚固。

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