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Stress distributions and crack growth in riveted lap joints fastening thick steel plates

机译:铆接钢板铆接圈关节中的应力分布和裂纹增长

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摘要

Single shear lap joints have been a common method to fasten steel plates in railroad bridges and can be highly susceptible to fatigue cracking under the cyclic loading bridges experience. To better comprehend the fatigue process of these connections, it is important to understand the stress state near the rivet hole. While the fatigue behavior of these riveted connections has been studied, few have been carried out on stress distribution and crack formation in riveted lap joints fastening thick steel plates. This study is to provide information regarding the stress distributions developed in a single shear lap joint connecting plates of varying thicknesses. Results from the stress contour analysis are utilized to detect possible regions for fatigue crack nucleation under cyclic heavy axle loads. The study also provides information regarding the fatigue crack geometry typically found in single shear lap joints.
机译:单剪切圈接头一直是将钢板固定在铁路桥梁中的常用方法,并且在循环加载桥梁体验下可以高易受疲劳裂缝的影响。 为了更好地理解这些连接的疲劳过程,重要的是要理解铆钉孔附近的应力状态。 虽然已经研究了这些铆接连接的疲劳行为,但是在紧固厚钢板的铆接圈接头中的应力分布和裂缝形成上进行了很少。 该研究是提供关于在不同厚度的单剪切圈接头连接板中产生的应力分布的信息。 应力轮廓分析的结果用于检测循环重轴载荷下疲劳裂纹成核的可能区域。 该研究还提供了有关通常在单剪切圈接头中发现的疲劳裂纹几何形状的信息。

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