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TRM vs FRP jacketing in shear strengthening of concrete members subjected to high temperatures

机译:TRM与FRP护套在高温下对混凝土构件的剪切加固

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摘要

This paper presents the first study on the performance of TRM and FRP jacketing in shear strengthening of reinforced concrete (RC) members subjected to ambient and high temperatures, including both medium-scale rectangular beams and full-scale T-beams. Key parameters investigated on the mediumscale rectangular RC beams include: (a) the matrix used to impregnate the fibres, namely resin or mortar, resulting in two strengthening systems (TRM or FRP), (b) the level of high temperature to which the specimens are exposed (20 �C, 100 �C, 150 �C, 250 �C), (c) the strengthening configuration (sidebonding, U-wrapping and full-wrapping), (d) the number of jacketing layers (2 and 3) and (e) the textile properties (geometry, material). The effectiveness of both non-anchored and anchored TRM jackets in shear strengthening of full-scale T-beams at high temperature was also studied. It is concluded that TRM possess excellent performance as strengthening material at high temperature. TRM jacketing remained very effective in shear strengthening of concrete at high temperature; on the contrary the effectiveness of side-bonding and U-wrapping FRP jacketing was reduced nearly to zero when subjected at temperatures above the glass transition temperature
机译:本文介绍了TRM和FRP护套在受环境和高温(包括中型矩形梁和全尺寸T型梁)的钢筋混凝土(RC)构件抗剪加固中的性能的首次研究。在中型矩形RC梁上研究的关键参数包括:(a)用于浸渍纤维的基质,即树脂或砂浆,形成两个增强系统(TRM或FRP),(b)样品达到的高温水平暴露(20°C,100°C,150°C,250°C),(c)加强配置(侧粘结,U形包裹和全包裹),(d)护套层数(2和3 )和(e)纺织品特性(几何形状,材料)。还研究了非锚固和锚固TRM护套在高温下对全尺寸T型梁进行剪切加固的有效性。结论是TRM在高温下作为增强材料具有优异的性能。 TRM护套对高温下的混凝土抗剪增强仍然非常有效。相反,在高于玻璃化转变温度的温度下,侧面粘合和U型包裹FRP护套的效率几乎降低到零

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