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Fatigue tests of notched specimens made from butt joints at steel

机译:钢制对接接头制成的缺口试样的疲劳试验

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The weld toe as well as the weld root of joints acts as a geometrical notch, which decreases the fatigue strength of welded components. Local approaches used for fatigue assessment account for the local stress concentration when referring to the notch stress as a fatigue parameter. This applies also to the approaches based on the notch stress intensity factor like, for example, the averaged strain energy density, neglecting the actual notch radius and considering a sharp notch as a simplification. A uniform S-N curve valid for different types of welded joints and failure locations was derived from re-analyses of fatigue test results as documented in literature. The fatigue tests described in this paper aimed at validating that energy-based S-N curve by dedicated tests on artificially notched specimens. At first, four parameters were investigated in order to estimate their influence on the fatigue strength and to select appropriate notch geometries for the final step of the test campaign. The advantages of these tests are that both the exact notch geometry and the local stress range at the notch, including misalignment effects, were identified and considered in experimental data analysis. This paper presents the results of the rather comprehensive testing activities and comparisons with the design-S-N curve mentioned, yielding unexpected fatigue behaviour. This can be explained by the short crack propagation life.
机译:焊趾和接头的焊缝根部起着几何缺口的作用,从而降低了焊接部件的疲劳强度。当将缺口应力作为疲劳参数时,用于疲劳评估的局部方法考虑了局部应力集中。这也适用于基于缺口应力强度因子的方法,例如平均应变能密度,忽略了实际缺口半径,并考虑将尖锐缺口作为简化方法。根据对疲劳试验结果的重新分析,得出了一条适用于不同类型的焊接接头和失效位置的均匀S-N曲线。本文所述的疲劳测试旨在通过​​对带缺口的人工试样进行专用测试来验证基于能量的S-N曲线。首先,研究了四个参数,以估计它们对疲劳强度的影响,并为测试活动的最后一步选择合适的槽口几何形状。这些测试的优势在于,可以在实验数据分析中识别并考虑确切的缺口几何形状和缺口处的局部应力范围(包括未对准效应)。本文介绍了相当全面的测试活动的结果,并与提到的设计S-N曲线进行了比较,得出了意外的疲劳行为。这可以用短的裂纹扩展寿命来解释。

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