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Fatigue Enhancement of Welded Details in Steel Bridges Using CFRP Overlay Elements

机译:CFRP叠层元素提高钢桥焊接细节的疲劳性

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Carbon-fiber reinforced polymer (CFRP)-ovetlay elements were developed with the purpose of enhancing the fatigue performance of welded connections in steel bridge girders. Fatigue tests of seven specimens, including four CFRP-strengthened specimens and three control specimens, were performed to quantify the effect of the CFRP overlays on the fatigue crack initiation lives of the welded connections. Results showed that bonding of CFRP overlays significantly reduced the stress demand on welded connections tested at high stress ranges, leading to a large increase in fatigue crack initiation life. The level of effectiveness of the CFRP-overlay elements in extending the fatigue crack initiation lives of the tested connections was found to be affected primarily by bond strength under cyclic loading; bond strength was found to be dependent on the composition and thickness of the resin layer used to bond the CFRP to the steel. With the AASHTO fatigue design curves as a frame of reference, it was found that when an optimal bond composition was employed, reinforcing the welded connections with CFRP overlays led to a change in fatigue performance category from that consistent with Category E to runout at high stress ranges. An optimal bond composition was identified that resulted in excellent performance under fatigue loading
机译:碳纤维增强聚合物(CFRP)-ovetlay元件的开发旨在增强钢桥大梁焊接连接的疲劳性能。进行了七个试样的疲劳试验,包括四个CFRP加强试样和三个对照试样,以量化CFRP覆盖层对焊接接头疲劳裂纹萌生寿命的影响。结果表明,CFRP覆盖层的粘结大大降低了在高应力范围内测试的焊接连接的应力需求,从而导致疲劳裂纹萌生寿命大大增加。发现CFRP覆层元素在延长测试连接的疲劳裂纹萌生寿命方面的有效性水平主要受循环载荷下的粘结强度影响。发现粘结强度取决于用于将CFRP粘结到钢上的树脂层的组成和厚度。以AASHTO疲劳设计曲线为参考框架,发现当采用最佳粘结成分时,用CFRP覆盖层加强焊接连接会导致疲劳性能类别从与E类一致的变化到高应力下的跳动范围。确定了最佳的粘合成分,从而在疲劳载荷下具有出色的性能

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