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首页> 外文期刊>Engineering failure analysis >Experimental investigation for structural parameter effects on fatigue behavior of rib-to-deck welded joints in orthotropic steel decks
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Experimental investigation for structural parameter effects on fatigue behavior of rib-to-deck welded joints in orthotropic steel decks

机译:正交钢甲板肋焊接接头疲劳性能对结构参数影响的实验研究

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摘要

Various fatigue cracks occurred in orthotropic steel decks have been reported in the last decade. The fatigue cracks initiated at the weld root of the fillet weld of rib-to-deck plate were investigated in this study. The fatigue behaviors were investigated by performing 19 full-scale fatigue tests, which conducted on six types of orthotropic steel decks with different structural parameters. The fatigue cracking patterns and their influence factors were discussed by comparing the crack propagation angles, crack lengths and depths of the cracked section. Meanwhile, the cracking mechanism and stress responses around root tip were analyzed by establishing elastic finite element models, and verify with fatigue tests results. The results of the experimental analysis demonstrated that fatigue cracks did not occur where the stress ranges were purely compressive, it was considered the welded joint might under the low tensile residual stress so that the effective stress range was reduced. Similarly, the magnitude of tensile stress range would play a decisive role during the root crack propagation. It was found that increasing the penetration rate had the beneficial effect of preventing root cracking. There was also a significant improvement in the fatigue durability when the deck plate thickness was increased from 12 mm to 16 mm. Finally, some special treatments in welded joint such as: the grinding at weld toe could avoid crack at toe but might lead to a deeper root crack, and the press straighten could be an effective treatment for preventing root cracks propagating in depth.
机译:过去十年来说,各种疲劳裂缝发生在正交钢甲板上。在该研究中研究了在肋骨焊盘焊盘焊接焊缝焊缝的焊接根部发起的疲劳裂缝。通过进行19种全规模疲劳试验来研究疲劳行为,该试验在具有不同结构参数的六种类型的正交钢甲板上进行的。通过比较裂缝传播角度,裂缝长度和裂纹部分的深度来讨论疲劳裂缝图案及其影响因素。同时,通过建立弹性有限元模型来分析根尖周围的裂缝机构和应力响应,并用疲劳试验验证结果。实验分析的结果表明,在应力范围纯粹压缩的情况下,不发生疲劳裂缝,认为焊接接头可能在低拉伸残余应力下,使得有效应力范围减少。类似地,拉伸应力范围的大小将在根裂纹传播期间发挥决定性作用。发现增加渗透率具有防止根裂化的有益效果。当甲板板厚度从12mm增加到16mm时,疲劳耐久性也存在显着的改善。最后,焊接接头中的一些特殊处理如:焊接脚趾的研磨可以避免在脚趾处裂缝,但可能导致更深的根裂纹,并且压力伸直可以是防止深度传播的根裂纹的有效处理。

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