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Fatigue behavior of reinforced welded hand-holes in aluminum light poles

机译:铝制灯杆中钢筋焊接手孔的疲劳行为

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Hand-holes are used in the body of welded aluminum light poles to access electrical wiring for installation and maintenance of luminaires. Light poles are slender and subjected to cyclic loading due to the wind. Localized fatigue cracking around hand-holes has been observed in the field, but few studies have focused on the resistance of welded aluminum hand-holes. In this study, four-point bending fatigue tests were conducted on specimens with welded aluminum hand-hole details. Twenty welded aluminum specimens, each with two hand-holes, were tested under fatigue loading. Among the forty details, thirty-two failed as a result of fatigue cracking. Fatigue test results used to develop a design S-N curve revealed a resistance in reasonable agreement with the Category D design S-N curve of the Aluminum Design Manual. Fatigue cracking initially observed in the throat of fillet weld joining the reinforcement ring to the pole subsequently extended into the tube and/or through the reinforcement casting. Finite element analysis was used to augment the experimental studies in an effort to explain the observed cracking behavior.
机译:在焊接的铝制灯杆的主体中使用手孔来访问电线,以安装和维护照明设备。灯杆很细,并且会受到风的周期性负载。在该领域中已经观察到手孔周围的局部疲劳裂纹,但是很少有研究集中在焊接铝手孔的电阻上。在这项研究中,对带有焊接铝手孔细节的样品进行了四点弯曲疲劳测试。在疲劳载荷下测试了20个焊接的铝试样,每个试样都有两个手孔。在这40个细节中,有32个由于疲劳裂纹而失败。用于制定设计S-N曲线的疲劳测试结果显示,其阻力与《铝设计手册》的D类设计S-N曲线合理。最初在角焊缝的喉部观察到疲劳裂纹,该角焊缝将增强环连接到杆上,随后延伸到管中和/或穿过增强铸件。为了解释观察到的开裂行为,有限元分析被用于增强实验研究。

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