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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Fatigue strength assessment of laser stake-welded web-core steel sandwich panels
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Fatigue strength assessment of laser stake-welded web-core steel sandwich panels

机译:激光熔接腹板芯钢夹芯板的疲劳强度评估

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This paper investigates the fatigue strength assessment of web-core steel sandwich panels. The production of these structures is made possible by laser stake welding. The investigation in this study considered two series of panels, one being an empty steel structure and the other filled with in situ polyurethane foam in order to increase the panel stiffness. Both series were tested under cyclic bending loading condition (R = 0) until one of the panel joints failed completely. A 3D panel bending response was analysed using finite element method. The J-integral values at the panel joints were obtained by means of plane strain finite element analysis and by using displacements from 3D panel response. The influence of the weld geometry on the J-integral value was investigated. It was found that the J-integral value is similar in the cases of the average and critical geometry. The contact between the joint plates is possible in some cases, but its influence proved to be insignificant for the fatigue strength assessment. The study further shows that by using the average geometry, the J-integral approach was able to identify the critical panel joints and present the fatigue strength results from both panel series in a narrow scatterband. The fatigue strength at two million cycles obtained for the panels within this study was in agreement with the laser stake welds and other steel joint types from previous studies. However, the slope of the panels fatigue resistance curve was found to be shallower than in the case of joints.
机译:本文研究了腹板芯钢夹芯板的疲劳强度评估。这些结构的生产可以通过激光熔焊进行。本研究中的研究考虑了两个系列的面板,一个是空的钢结构,另一个是就地填充聚氨酯泡沫以增加面板的刚度。在循环弯曲载荷条件下(R = 0)对两个系列进行测试,直到其中一个面板接头完全失效。使用有限元方法分析了3D面板的弯曲响应。通过平面应变有限元分析以及使用来自3D面板响应的位移来获得面板接头处的J积分值。研究了焊缝几何形状对J积分值的影响。发现在平均几何形状和临界几何形状的情况下,J积分值相似。在某些情况下,可能会发生接缝板之间的接触,但事实证明,其影响对于疲劳强度评估而言并不重要。研究进一步表明,通过使用平均几何形状,J积分方法能够识别关键的面板接缝,并在狭窄的散射带中显示两个面板系列的疲劳强度结果。本研究中的面板在200万次循环中获得的疲劳强度与以前研究中的激光熔焊和其他钢接头类型一致。但是,发现板的抗疲劳性曲线的斜率比接缝的情况更浅。

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