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Effects of connecting materials on the static and fatigue behavior of pultruded basalt fiber-reinforced polymer bolted joints

机译:连接材料对拉挤玄武岩纤维增强聚合物螺栓接头静态和疲劳行为的影响

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摘要

Owing to the heavy weight and poor durability of the bolted joints with traditional connecting materials composed of steel cover plates and steel bolts in the fiber-reinforced polymer (FRP) profiles, a novel homogenous joint consisted of basalt FRP (BFRP) cover plates and BFRP bolts was developed in this study. An experimental investigation on the static behavior of the double-lap shear bolted joints was carried out using different connecting materials to be compared, i.e. four types of combinations composed of steel/BFRP cover plates and steel/BFRP bolts, and different numbers of bolts. Fatigue experiments of the bolted joints with selected combinations were performed to further compare the behavior of the homogenous joints using S-N curve and fatigue strength. The results showed that shear-out failure occurred in the inner plates in all bolted joint combinations, which was independent of the connecting material. The ultimate failure load of the homogeneous joints was comparable to that with the traditional connecting material. However, the fatigue strength level for the specimens sustaining more than 2 million cycles for the former was slightly higher than the latter with same stress ratio of 0.05. The predicted stress level as a function of the fatigue lives was obtained from the experimental results showing satisfactory regression. The experimental work can serve as a reference in the design of FRP bolted joints applied in the truss structures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于螺栓接头的重量和耐用性耐耐用性,具有由纤维增强聚合物(FRP)型材(FRP)型材的钢板和钢螺栓组成的传统连接材料,一种新颖的均匀关节由玄武岩FRP(BFRP)盖板和BFRP组成本研究开发了螺栓。使用待比较的不同连接材料进行对双圈剪切螺栓接头的静态行为的实验研究,即使用不同的连接材料,即由钢/ BFRP盖板和钢/ BFRP螺栓组成的四种组合,以及不同数量的螺栓。进行具有所选组合的螺栓连接的疲劳实验以进一步比较均匀关节使用S-N曲线和疲劳强度的行为。结果表明,在所有螺栓接头组合中的内板中发生剪切发生故障,其与连接材料无关。均匀关节的最终故障负载与传统连接材料相当。然而,对于前者维持超过2百万个循环的标本的疲劳强度水平略高于后者,应力比为0.05。作为疲劳生命的函数的预测应力水平是从实验结果获得的,显示出令人满意的回归。实验工作可以作为在桁架结构中施加的FRP螺栓接头设计中的参考。 (c)2020 elestvier有限公司保留所有权利。

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