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Stability and failure characterization of fiber reinforced pultruded beams with different stiffening elements, Part Ⅰ: Experimental investigation

机译:不同加劲元件的纤维增强拉挤梁的稳定性和破坏特性,第一部分:实验研究

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The un-stiffened fiber reinforced polymer (FRP) beams under three-point bending often fail at compression web flange junction due to low inter-laminar shear and transverse compressive strengths of web. Therefore, the objective of the present work is to study the effect of different stiffening elements on the flexural response of FRP I-beams. Various stiffening elements such as glass fiber reinforced polymer (GFRP) cover plates, cover angles, and bearing stiffeners are connected to the beam separately to examine their effect on the strength, stiffness and failure modes. This study also includes the strengthening of web-flange junction of FRP I-beams using carbon fiber layers with adhesive. It is observed that replacing the chopped strand mats with 45 degrees and 90 degrees unidirectional rovings increases the crushing strength of the beam. Strengthening of web-flange junction using carbon fiber layers or stiffening with short length bearing stiffeners under loading is observed to be most effective in preventing the failure of web-flange junction of FRP I-beams. Beams stiffened with short length bearing stiffeners have higher failure load than other stiffened beams. Strengthening of web-flange junction using wet carbon fiber layers is noted to be more effective than stiffening with GFRP cover angles. Since the stress concentration produced due to the sudden change in the cross-section of beams strengthened with carbon fiber reinforced polymer (CFRP) laminated cover angle is less than that for beams stiffened with GFRP cover angles.
机译:由于较低的层间剪切强度和腹板的横向抗压强度,未加筋的纤维增强聚合物(FRP)梁在三点弯曲下通常会在腹板压接处失效。因此,本工作的目的是研究不同的加劲元件对FRP I型梁挠曲响应的影响。各种加固元件(例如玻璃纤维增​​强聚合物(GFRP)盖板,护角和轴承加劲肋)分别连接到梁,以检查它们对强度,刚度和破坏模式的影响。这项研究还包括使用带有粘合剂的碳纤维层加强FRP I型梁的腹板-法兰连接。可以看到,用45度和90度单向粗纱代替切碎的绞合毡可以增加梁的抗压强度。观察到在负载下使用碳纤维层加强腹板-法兰接合处或使用短长度的轴承加劲肋进行加固对于防止FRP工字梁的腹板-法兰接合处失效最有效。用短长度轴承加劲肋加劲的梁比其他加劲梁具有更高的破坏荷载。注意到使用湿碳纤维层加强腹板-法兰连接比用GFRP覆盖角加强更有效。由于碳纤维增强聚合物(CFRP)层压覆盖角加固梁的横截面突然变化所产生的应力集中小于使用GFRP覆盖角加固梁的应力集中。

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