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Fatigue failure transition analysis in load-carrying cruciform welded joints based on strain energy density approach

机译:基于应变能密度法的承载式十字形焊接接头疲劳失效过渡分析

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This paper details a study of the application of notch stress intensity theory to the fatigue failure mode analysis of the transition in load-carrying cruciform welded joints. The weldment fatigue crack initiation point is difficult to predict precisely because it usually occurs in the vicinity of the weld toe or weld root. To investigate the relationship between fatigue failure location and the geometry of the weldments, we analysed the weld toe and root asymptotic notch stress fields were analysed using the notch stress intensity factors on the basis of the Williams' solution in Linear Elastic Fracture Mechanics (LEFM). Numerous configurations of cruciform joints of various plate thicknesses, transverse plate thickness, weld sizes and incomplete penetration size were used to investigate the location of the fatigue failure. The strain energy density (SED) surrounding the notch tip was introduced to unify the scalar quantity and preclude the inconsistency of the dimensionality of the notch stress intensity factors for various notch opening angles. The results of the investigation showed that the SED approach can be used to determine the transition zone for a variety of joint geometries. The validity of the SED criteria was verified by comparing the experimental results of this study with the complied results for load-carrying cruciform welded joints reported in literature.
机译:本文详细研究了缺口应力强度理论在承重十字形焊接接头过渡疲劳破坏模式分析中的应用。焊件疲劳裂纹的起始点很难精确预测,因为它通常发生在焊趾或焊根附近。为了研究疲劳失效位置与焊件几何形状之间的关系,我们分析了焊趾和根部渐进式缺口应力场,并根据缺口应力强度因子在线性弹性断裂力学(LEFM)中的威廉姆斯解的基础上进行了分析。 。使用各种不同厚度,不同横向板厚,焊接尺寸和不完全熔深尺寸的十字形接头来研究疲劳破坏的位置。引入槽口尖端周围的应变能密度(SED)以统一标量,并避免了各种槽口张开角度下槽口应力强度因子的维数不一致。调查结果表明,SED方法可用于确定各种几何形状的过渡区域。通过将本研究的实验结果与文献中报道的承载十字形焊接接头的符合结果进行比较,验证了SED标准的有效性。

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