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首页> 外文期刊>Journal of Composites for Construction >Joint Strength of Single-Bolted Pultruded GFRP Square Hollow Sections with Mechanical Inserts under Elevated Temperatures
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Joint Strength of Single-Bolted Pultruded GFRP Square Hollow Sections with Mechanical Inserts under Elevated Temperatures

机译:高温下带机械插件的单螺栓拉挤GFRP方空心节的结合强度

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The sensitivity of the joint performance of pultruded fiber reinforced polymer (FRP) to elevated temperatures has been known to limit the widespread application of FRP composites in civil construction. This paper presents a study of the effect of elevated temperatures and mechanical inserts on the joint strength and failure mechanism of a square hollow section (SHS) of pultruded glass FRP (GFRP) composites. Three pultruded GFRP bolted joint configurations were implemented- namely, a joint without mechanical insert (N), a joint with mechanical insert with tight-fit attachment (I), and a joint with mechanical insert bonded with epoxy adhesive (G). Sixty (60) square pultruded GFRPs with a single all-threaded bolt connection each were tested up to failure at room temperature 40 degrees C, 60 degrees C, and 80 degrees C. Specimen G exhibited the highest joint strength, with twice more than that of Specimen N across the temperature range. Specimens N and I failed by shear-out at high temperatures mainly due to the deterioration of the interfacial bond between the fibers and the matrix. The strength reduction factor, k, and modification factor, m, which incorporate the increasing temperatures and the designed joint configurations showed excellent agreement when compared to the experimental results. (C) 2019 American Society of Civil Engineers.
机译:众所周知,拉挤纤维增强聚合物(FRP)的联合性能对高温的敏感性限制了FRP复合材料在民用建筑中的广泛应用。本文研究了高温和机械嵌件对拉挤玻璃纤维增​​强塑料(GFRP)复合材料的方形空心截面(SHS)的结合强度和破坏机理的影响。实施了三种拉挤的GFRP螺栓连接构型-即,不带机械插件的接头(N),带机械接头和紧配合附件的接头(I)和带机械插件和环氧胶粘结的接头(G)。测试了六十(60)平方根带有单个全螺纹螺栓连接的GFRP,分别在室温40摄氏度,60摄氏度和80摄氏度下进行了测试,直至失效。试样G的接合强度最高,是其最高两倍。样品N在整个温度范围内的变化。样品N和I在高温下由于剪切作用而失效,这主要是由于纤维和基体之间的界面键变差了。与实验结果相比,结合了不断升高的温度和设计的接头构型的强度降低系数k和改性系数m表现出极好的一致性。 (C)2019美国土木工程师学会。

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