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Experimental and finite element analysis research on the fatigue performance of CHS K-joints

机译:CHS K型接头疲劳性能的实验与有限元分析研究

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Fatigue tests on full-scale CHS K-joint models have been conducted, exploring the distribution of hot spot stress, fatigue crack development, and fatigue failure modes. A three-dimensional solid finite element model has been established to carry out a parametric analysis of the main influences on the stress concentration factors for CHS K-joints using the general software MSC.MARC. A novel stress concentration factor method based on the CHS K-joint stiffness has been proposed by combining a theoretical derivation and a regression analysis. The results reveal that the hot spot stress of a CHS K-joint can be obtained with a linear extrapolation. The location of the maximum hot spot stress appears on the crown toe point of the chord and tensile brace intersection welding seam near the chord intersecting line. A fatigue crack in a CHS K-joint belongs to the opening Class I crack category. When the fatigue crack penetrates the full thickness of the chord, the fatigue crack develops rapidly; the fatigue failure of the CHS K-joint belongs to the brittle failure category in the elastic range. A coupling action caused by the geometric parameters is demonstrated to exist in the stress concentration factor of CHS K-joints. Given the current stress concentration factor method for CHS K-joints is based on a regression analysis using a single geometric parameter, this limitation impacts its application in accurately in developing bridge structures. The novel stress concentration factor method encompassing the CHS K-joint stiffness proposed in this paper considers the coupling action on the stress concentration factor caused by the joint geometric parameters, in addition to improving the conservativeness and accuracy in evaluating and calculating the stress concentration factors of CHS K-joints used in bridge structures.
机译:已经对全尺寸CHS K型接头模型进行了疲劳测试,探讨了热点应力的分布,疲劳裂纹发展和疲劳失效模式。建立了三维立体有限元模型,使用通用软件MSC.MARC对CHS K型接头应力集中因子的主要影响进行参数分析。结合理论推导和回归分析,提出了一种基于CHS K型接头刚度的应力集中因子新方法。结果表明,可以通过线性外推获得CHS K接头的热点应力。最大热点应力的位置出现在弦相交线附近的弦和拉伸撑杆相交焊缝的冠尖上。 CHS K型接头中的疲劳裂纹属于开放I类裂纹类别。当疲劳裂纹渗入弦的整个厚度时,疲劳裂纹会迅速发展。 CHS K型接头的疲劳破坏在弹性范围内属于脆性破坏类别。 CHS K型接头的应力集中系数表明存在由几何参数引起的耦合作用。鉴于当前的CHS K型接头应力集中因子方法基于使用单个几何参数的回归分析,因此该限制会影响其在开发桥梁结构中的应用。本文提出的一种新的包含CHS K节点刚度的应力集中因子方法,除了考虑了节点几何参数对应力集中因子的耦合作用外,还提高了评估和计算应力集中因子的保守性和准确性。 CHS K型接头用于桥梁结构。

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