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Low-cycle fatigue analysis of a web frame corner in ship structures

机译:船舶结构腹板角的低周疲劳分析

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摘要

Ship structures are subjected to cyclic loads which may lead to fatigue failures particularly at welded joints. In addition to loads induced by waves and structural vibrations, which contribute to high-cycle fatigue, various structural details are also subjected to a limited number of high-stress cycles caused by changing loading conditions, which may lead to low-cycle fatigue. Thus, appropriate procedures are required for the shipbuilding industry, which are missing in the existing design codes. Experimental investigations and numerical analyses were performed to validate a procedure for the design of ship structures in the low-cycle fatigue regime. Three large-scale fatigue tests were carried out with high bending moments on test models of web frame corners in order to initiate fatigue cracks after few hundred cycles. Different cracks occurred; however, a crack at the cruciform joint has shown to determine the failure of the connection. An extension of the effective notch stress approach was applied to this joint to assess the low-cycle fatigue life, considering the elastic-plastic strain, evaluated by nonlinear finite element analyses, in the notch of the weld toe. This practical method offers promising possibilities to assess the fatigue life of welded joints in the low-cycle fatigue regime.
机译:船舶结构承受周期性载荷,这可能导致疲劳失效,尤其是在焊接接头处。除了由波浪和结构振动引起的载荷(这些载荷会导致高周疲劳)外,各种结构细节还受到由于载荷条件变化而导致的有限数量的高应力循环的影响,这可能导致低周疲劳。因此,造船业需要适当的程序,而现有的设计规范中却没有这些程序。进行了实验研究和数值分析,以验证低循环疲劳状态下船舶结构设计的程序。为了在数百次循环后引发疲劳裂纹,对腹板框架角部的测试模型进行了三个高弯矩的大型疲劳试验。出现了不同的裂纹;但是,十字形接头处的裂纹表明了连接的失败。考虑到通过塑性有限元分析评估的弹塑性应变,有效的缺口应力方法已被扩展到该接头,以评估低周疲劳寿命。这种实用的方法为评估低周疲劳状态下焊接接头的疲劳寿命提供了有希望的可能性。

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