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首页> 外文期刊>International Journal of Adhesion & Adhesives >An anchorage system for CFRP strips bonded to thermally shocked concrete
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An anchorage system for CFRP strips bonded to thermally shocked concrete

机译:CFRP筋粘结到热震混凝土的锚固系统

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The potential of using CFRP sheet to anchorage CFRP strips, attached to thermally-damaged normal and lightweight concretes (NWAC and LWAC), is investigated. Far-end pull-off specimens were prepared using intact and thermally shocked NWAC and LWAC blocks before tested for evaluating bond behavior. The thermal shock regime, which consisted from heating to 500 degrees C then cooling suddenly in water, had caused a significant reduction in pull-off force (or bond strength) of as high as 36 and 23% and an increase in slip at failure of as high as 49% and 58%, respectively. The efficiency of anchoring CFRP strips by sheet was more pronounced for LWAC than NWAC and for thermally damaged than control LWAC or NWAC. Furthermore, using higher anchorage length of CFRP sheets along the bond length of the strips contributed to enhancing bond characteristics. The model, proposed in this paper to predict CFRP-concrete bond characteristics, showed excellent fit to present data and promising predictability. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了使用CFRP板锚固CFRP条带的可能性,这些CFRP条带附着在热损伤的普通和轻质混凝土(NWAC和LWAC)上。在测试粘合性能之前,使用完整的和热冲击的NWAC和LWAC块制备了远端剥离样品。从加热到500摄氏度,然后在水中突然冷却所组成的热冲击状态,已使拉拔力(或粘结强度)显着降低了36%和23%,并且在失效时的滑动增加了。分别高达49%和58%。与NWAC相比,LWAC和热损坏的LWAC效果比对照LWAC或NWAC更加明显。此外,沿着条的粘结长度使用较高的CFRP片锚固长度有助于增强粘结特性。本文中提出的用于预测CFRP-混凝土粘结特性的模型表明,该模型非常适合当前数据并具有可预测的可预测性。 (C)2016 Elsevier Ltd.保留所有权利。

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