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首页> 外文期刊>Journal of bridge engineering >Girder Differential Deflection and Distortion-Induced Fatigue in Skewed Steel Bridges
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Girder Differential Deflection and Distortion-Induced Fatigue in Skewed Steel Bridges

机译:斜钢桥的梁微分挠度和变形疲劳

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摘要

The prevalence of fatigue cracking in steel bridge girders due to out-of-plane web distortion motivates development of procedures to evaluate the effects of distortional fatigue. In a previous study sponsored by the Minnesota Department of Transportation (Mn/DOT) the frequency and magnitude of distortional stresses on a typical skewed, steel bridge with staggered, bent-plate diaphragms were assessed. The results revealed a diaphragm deformation mechanism that causes distortional fatigue in the girder web gap, leading to simple, accurate estimates of fatigue stress if bridge properties and differential vertical deflection between girders are known. In the present study, linear finite element models are used to represent composite steel bridges and identify bridge parameters that influence relative deflection of adjacent girders. Parameters found to have a significant effect on differential deflection include girder spacing, angle of skew, span length, and deck thickness. These results are incorporated in a simple procedure that is intended for use in management schemes for skewed, steel-girder bridges, with staggered, bent-plate diaphragms, susceptible to web gap distortional fatigue.
机译:钢桥梁由于平面外腹板变形而引起的疲劳裂纹的盛行促使人们开发了评估变形疲劳影响的程序。在由明尼苏达州交通运输部(Mn / DOT)赞助的先前研究中,评估了具有交错弯板隔板的典型斜钢桥上的变形应力的频率和大小。结果表明,如果已知桥梁特性和大梁之间的垂直挠度差异,则膜片变形机制会在梁腹板间隙中引起变形疲劳,从而导致疲劳应力的简单,准确估算。在本研究中,线性有限元模型用于表示复合钢桥,并确定影响相邻梁的相对挠度的桥参数。发现对微分挠度有重大影响的参数包括梁间距,偏斜角,跨度长度和桥面厚度。将这些结果合并到一个简单的过程中,该过程旨在用于带有交错,弯曲板膜片的易受腹板变形疲劳影响的斜钢梁桥管理方案。

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