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Fatigue strength of laser-welded thin-plate ship structures based on nominal and structural hot-spot stress approach

机译:基于名义和结构热点应力方法的激光焊接薄板船结构疲劳强度

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摘要

To improve the energy efficiency, the demand for new light-weight solutions has been increased significantly in the last decades. The weight reduction of the current ship structures is possible using thinner plates, that is, plate thickness between 3 and 4 mm. However, at present this is, in normal cases, not possible due to the 5 mm minimum plate thickness requirement given by classification societies. The present paper investigates the fatigue strength of thin-plated ship structures. In the European research project BESST - 'Breakthrough in European Ship and Shipbuilding Technologies' - the extensive fatigue test programme was carried out for butt- and fillet-welded specimens, which were manufactured by the arc, laser and laser-hybrid welding methods. The test programme also covered the different production quality and thus a large variation of misalignments was included. Fatigue test results were analysed using the nominal as well as the structural stress approach, where the actual geometry of the specimens was taken into account. The results show that the present design S-N curve with slope value of 3 is applicable to thin plates, but it is slightly non-conservative. The fatigue test results for thin plates show better agreement with the slope value of 5. For thin plates and slender ship structures, the secondary bending stress due to angular misalignment plays an important part and changes in a non-linear way with the applied tension load. Therefore, it is important to consider the plate straightening effect in structural stress analysis.
机译:为了提高能源效率,最近几十年来,对新型轻型解决方案的需求已大大增加。使用较薄的板,即板厚度在3到4 mm之间,可以减轻当前船舶结构的重量。但是,由于船级社规定的最小钢板厚度要求为5mm,目前在正常情况下这是不可能的。本文研究了薄板船结构的疲劳强度。在欧洲研究项目BESST-“欧洲船舶和造船技术的突破”中,对通过弧焊,激光和激光混合焊接方法制造的对接焊缝和角焊缝焊缝实施了广泛的疲劳测试程序。该测试程序还涵盖了不同的生产质量,因此其中包括偏差大的变化。使用名义应力和结构应力方法对疲劳测试结果进行了分析,其中考虑了样品的实际几何形状。结果表明,目前设计的S-N曲线的斜率值为3,适用于薄板,但略有保守性。薄板的疲劳测试结果与5的斜率值更好地吻合。对于薄板和细长的船舶结构,由于角错位而引起的二次弯曲应力起着重要的作用,并且随着施加的拉力载荷呈非线性变化。 。因此,在结构应力分析中考虑板的校直效果很重要。

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