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Renovation techniques for rib to deckplate fatigue cracking in orthotropic bridge decks

机译:正交异性桥面板肋至面板疲劳裂纹的翻新技术

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Steel orthotropic bridge decks possess 5 fatigue critical points. One of these is the longitudinal rib to deckplate weld. At that connection, a combination of large transverse bending stresses caused by concentrated wheel loads and residual stresses in local plasticized zones due to the welding procedure may initiate fatigue cracking at the weld root or toe. For new bridges, the normative documents provide minimum plate thicknesses, in combination with maximum rib spacings in order to avoid fatigue problems. However, a large number of these decks have been built around the world since the 1950’s, which do not comply to these recommendations, many of them showing fatigue cracks. For these bridges, renovation solutions are required since the deck system cannot be separated from the main structural system. A first part of this paper reviews the current state of the art of renovation techniques for poorly designed rib to deckplate connections including peening, stress relieving and overlaying. In a second part the results of a full scale fatigue test carried out at Ghent University College are presented and discussed. In this test, an epoxy bonded connection between the original steel plate and a repair plate is tested under fatigue loading conditions at 5000000 cycles. The test indicates no signs of crack initiation or debonding, confirming this method as a valid alternative.
机译:正交异性钢桥面甲板具有5个疲劳临界点。其中之一是纵向肋骨与盖板的焊接。在这种情况下,由集中的车轮载荷引起的大的横向弯曲应力和由于焊接过程而导致的局部塑化区域中的残余应力的组合可能会在焊根或趾部引发疲劳裂纹。对于新的桥梁,规范性文件提供了最小的板厚度以及最大的肋骨间距,以避免疲劳问题。但是,自1950年代以来,全世界已经建造了许多这样的甲板,这些甲板不符合这些建议,其中许多显示出疲劳裂纹。对于这些桥梁,由于甲板系统无法与主要结构系统分开,因此需要翻新解决方案。本文的第一部分回顾了设计不当的肋骨到盖板连接的翻新技术的现状,包括喷丸,应力消除和覆盖。在第二部分中,介绍并讨论了在根特大学学院进行的全面疲劳测试的结果。在该测试中,在疲劳载荷条件下以5000000次循环测试了原始钢板和修补板之间的环氧连接。该测试表明没有裂纹萌生或脱粘的迹象,从而证实了该方法是有效的替代方法。

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