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Finite Element Analysis Of Thin Gfrc Panels Reinforced With Frp

机译:玻璃纤维增​​强的玻璃钢薄板的有限元分析

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摘要

Glass fibre reinforced concrete (GFRC) incorporating fibre reinforced polymer (FRP) bar reinforcement is potentially an ideal composite material for the manufacture of thin structural elements due to its superior durability over GFRC containing conventional steel reinforcement. GFRC without any bar reinforcement has only been used for small units and short spans due to its relatively low flexural strength. Until now, no work has been reported on the use of FRP bars in GFRC. The first part of the paper deals with the stress-strain characteristics of GFRC. In the second part the bond strength of GFRC with both steel and FRP reinforcing bars is determined from a series of 24 pullout tests from which the characteristics of the local bond stress-slip response was established. The results show that the bond of FRP bars in GFRC is, in general, better than the bond in normal concrete, and that conventional numerical models can be used to model the behaviour. The last part of the paper investigates the performance of a 3 m span thin GFRC permanent formwork panel, reinforced with FRP, both experimentally and analytically with finite element (FE) analysis. It is concluded that the behaviour of thin GFRC elements incorporating FRP reinforcement can be predicted by FE analysis in which the GFRC stress-strain characteristics and bond characteristics are modelled with robust spring elements.
机译:掺入纤维增强聚合物(FRP)钢筋的玻璃纤维增​​强混凝土(GFRC)潜在地是制造薄结构元件的理想复合材料,因为它比包含常规钢增强材料的GFRC具有卓越的耐久性。 GFRC不带钢筋,由于其相对较低的抗弯强度,仅用于小型单位和短跨度。到目前为止,还没有关于在GFRC中使用FRP筋的报道。本文的第一部分讨论了GFRC的应力应变特性。在第二部分中,GFRC与钢和FRP钢筋的结合强度是通过一系列的24个拉拔试验确定的,由此确定了局部结合应力-滑移响应的特征。结果表明,一般来说,GFRC中FRP筋的粘结性能要好于普通混凝土中的粘结性能,并且可以使用常规数值模型来模拟行为。本文的最后一部分研究了用FRP加固的3 m跨距薄GFRC永久模板的性能,并通过有限元(FE)分析进行了实验和分析。结论是,可以通过有限元分析来预测结合有FRP增强的薄GFRC元件的行为,在有限元分析中,使用坚固的弹簧元件对GFRC应力-应变特性和粘结特性进行建模。

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