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A procedure for fatigue design of web-stiffened cruciform connections

机译:腹板加筋十字形连接疲劳设计的程序

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Fatigue design of dynamic loaded ship structures is normally based on finite element analysis using shell elements where the welds are not included in the analysis models. Finite element analyses of a fatigue-tested hopper knuckle type specimen were performed for calibration of analysis methodology in a joint industry project. The test specimen was analyzed using solid and shell elements. Only the solid element models included the weld geometry. In the present work, the finite element analyses were extended to other geometries at web-stiffened cruciform joints such as typical found at hopper connections, at stringer heels, and at joints connecting deck structures to vertical members in ship structures. Based on the result from these analyses, a methodology for derivation of hot spot stress at welded connections accounting for the weld size using shell finite element models was developed. The basis for this procedure is presented in this paper.
机译:动态载荷船结构的疲劳设计通常基于使用壳单元的有限元分析,其中分析模型中不包括焊缝。在一个联合工业项目中,对经过疲劳测试的漏斗节型样本进行了有限元分析,以校准分析方法。使用固体和外壳元素分析了试样。仅实体元素模型包括焊缝几何形状。在目前的工作中,有限元分析扩展到腹板加筋的十字形接头处的其他几何形状,例如在料斗连接处,桁条跟部处以及将甲板结构与船舶结构中的垂直构件连接的接头处发现的典型几何形状。基于这些分析的结果,开发了一种使用壳有限元模型得出考虑焊接尺寸的焊接连接处热点应力的方法。本文介绍了此过程的基础。

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