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Effect of whipping stresses on the fatigue damage of ship structures

机译:鞭打应力对船舶结构疲劳损伤的影响

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摘要

Fatigue failures in ships are mainly caused by waves. Higher frequent stresses due to vibrations induced by wave impact, called whipping, are typically not considered in design. However, the bow and stern flare of many recently built container vessels has been increased causing higher and more frequent whipping stresses. Full-scale measurements have shown a significant increase of the fatigue damage caused by high-frequent loads if rainflow counting and Palmgren-Miner Rule are assumed. On the other hand, an increased damage rate has not yet been observed so that questions arose if this approach and the neglect of sequence effects of stress cycles are justified for these load processes. Therefore, fatigue tests have been performed with transverse stiffeners on a continuous plate. In a first investigation, low-frequent, constant amplitude loads were superimposed by higher frequent stress cycles. In successive investigations, stress histories extracted from the full-scale measurements on a Panamax containership, containing a typical whipping event, were applied. Fatigue lives obtained from the tests with and without whipping load cycles agree reasonably well with those calculated with the Palmgren-Miner Rule. Finally, a recent proposal of the authors for a simplified consideration of the whipping stresses in fatigue analyses for ships is discussed.
机译:船舶的疲劳失效主要是由波浪引起的。在设计中通常不考虑由于波浪冲击引起的振动而产生的较高的频繁应力,称为鞭打。但是,许多最近建造的集装箱船的船首和船尾火炬已经增加,引起越来越大的鞭打应力。如果假定采用雨流量计数和Palmgren-Miner规则,则满量程测量表明,由高频载荷引起的疲劳损伤显着增加。另一方面,还没有观察到损坏率增加的情况,因此对于这种载荷过程,是否有理由采用这种方法以及忽略应力循环的顺序效应是有问题的。因此,已经在连续板上对横向加劲肋进行了疲劳测试。在第一个研究中,低频,恒定振幅载荷被较高的频繁应力循环所叠加。在连续的研究中,应用了从巴拿马型货船上的全面测量中提取的应力历史,其中包含典型的搅动事件。在有或没有甩负荷循环的情况下,从试验中获得的疲劳寿命与用Palmgren-Miner规则计算的疲劳寿命相当吻合。最后,讨论了作者最近提出的关于简化船舶疲劳分析中的鞭打应力的建议。

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