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首页> 外文期刊>Journal of Performance of Constructed Facilities >Fatigue Reliability Assessment of Potential Crack Initiation of Tube-to-Transverse Plate Connections for Cantilever Sign Support Structures
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Fatigue Reliability Assessment of Potential Crack Initiation of Tube-to-Transverse Plate Connections for Cantilever Sign Support Structures

机译:悬崖标志支持结构管对横板连接电位裂纹启动的疲劳可靠性评估

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Tube-to-transverse plate stiffened connection details are widely used in cantilevered sign support structures in New Jersey and many other states. This stiffened fillet-welded connection showed a lower stress level than the socket connection at the fillet weld toe at the base. However, the tip of stiffener location on the tube wall becomes a more critical fatigue crack location according the AASHTO. This paper evaluates a reliability-based fatigue assessment for the potential crack initiation at the tip of stiffener. A synthetic analysis of 1-h averaged wind speed wind data from two New Jersey weather stations was performed. The wind data were transformed to the transient domain to represent the turbulent natural wind phenomena and the effective stress ranges and number of cycles were obtained using the rainflow counting technique. To evaluate fatigue resistance of these connection details, existing fatigue test data of fatigue crack initiation at the tip of stiffener were analyzed and a statistical analysis of linear stress-life (S-N) fatigue data provided fatigue coefficients. The probability of fatigue crack initiation versus time of sign structures with different orientations of sign panel was determined using a reliability-based fatigue assessment approach. Results showed that the probability of crack initiation during the life span is dependent on wind cycles, orientation, and fatigue coefficients obtained from experimental S-N curves. The results can be used to estimate inspection frequencies of this critical detail in sign structures. (c) 2018 American Society of Civil Engineers.
机译:管 - 横向板加强连接细节广泛用于新泽西州的悬臂标志支持结构和许多其他州。这种加强的圆角焊接连接显示比底座焊接脚趾上的插座连接较低的应力水平。然而,管壁上的加强件位置的尖端根据AASHTO成为更严重的疲劳裂缝位置。本文评估了基于可靠性的疲劳评估,用于加强尖端的潜在裂纹启动。进行了来自两个新泽西州气象站的1-H平均风速风数据的合成分析。将风数据转换为瞬态域以表示湍流自然风现象,并且使用雨流量计数技术获得有效应力范围和循环次数。为了评估这些连接细节的疲劳电阻,分析了加强件尖端的疲劳裂纹启动的现有疲劳试验数据,并提供了线性应力 - 寿命(S-N)疲劳数据的统计分析提供了疲劳系数。利用基于可靠性的疲劳评估方法确定具有不同符号面板不同取向的抗疲劳裂纹启动与符号结构时间的概率。结果表明,寿命期间裂纹启动的概率取决于从实验S-N曲线获得的风循环,取向和疲劳系数。结果可用于估算符号结构中这种关键细节的检查频率。 (c)2018年美国土木工程师协会。

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