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首页> 外文期刊>Key Engineering Materials >The Influence of Longitudinal Stiffeners on Weld Toe Stress Concentrations in Multi Planar Tubular KK joints
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The Influence of Longitudinal Stiffeners on Weld Toe Stress Concentrations in Multi Planar Tubular KK joints

机译:纵向加劲肋对多平面管状KK接头中焊趾应力集中的影响

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摘要

This paper reports a parametric stress analysis of various configurations of rack plate stiffened multi-planar welded KK joints using the finite element method. The KK joint finds application in the leg structure of offshore Oil & Gas jack-up platforms. The rack plate is a dual purpose element of the joint because it firstly functions as a stiffener which reduces the stress concentration at the brace/chord intersection. This could be an immense contribution to the increase in fatigue life of the joint but other hot spot sites are introduced to the joint. The rack is also used for raising and lowering of the jack-up hull which gives the jack-up platform its jacking capability. Over 120 models using a combination of shell and solid elements were built and analysed within ABAQUS. Non-dimensional joint geometric parameters; β, γ and Ω were employed in the study with Ω being defined as the ratio of rack thickness to chord diameter. Stress Concentration Factors (SCFs) were calculated under applied axial and OPB (out-of-plane-bending) loading. Three critical SCF locations were identified for each load case, with each location becoming the most critical based on the combination of the non-dimensional parameters selected for the joint. This is important as careful design can shift the critical SCF from an area inaccessible to NDT to one that can be easily inspected. The SCF values extracted from the models were used to derive six parametric equations through multiple regression analysis performed using MINITAB. The equations describe the SCF at the different locations as a function of the non-dimensional ratios. The equations not only allow the rapid optimisation of multi-planar joints but also can be used to quickly identify the location of maximum stress concentration and hence the likely position of fatigue cracks. This in itself is an invaluable tool for planning NDT procedures and schedules.
机译:本文报告了使用有限元方法对齿板加劲肋多平面焊接KK接头的各种构型进行的参数应力分析。 KK接头在海上油气顶升平台的支腿结构中得到了应用。齿条板是关节的两用元件,因为它首先用作加强筋,可减少撑杆/弦交点处的应力集中。这可能对延长接头的疲劳寿命做出了巨大贡献,但其他热点部位也引入了接头。机架还用于升高和降低自升式船体,从而使自升式平台具有自升能力。在ABAQUS中使用壳体和实体元素的组合构建了120多个模型并进行了分析。无量纲联合几何参数; β,γ和Ω用于研究,Ω定义为齿条厚度与弦直径之比。在施加的轴向载荷和OPB(平面外弯曲)载荷下计算应力集中因子(SCF)。对于每种负载情况,确定了三个关键的SCF位置,根据为接头选择的无量纲参数的组合,每个位置都变得最关键。这一点很重要,因为精心的设计可以将关键的SCF从无法进入NDT的区域转移到易于检查的区域。通过使用MINITAB进行的多元回归分析,从模型中提取的SCF值用于导出六个参数方程式。这些方程式将不同位置的SCF描述为无量纲比的函数。这些方程式不仅可以快速优化多平面接头,而且可以用来快速确定最大应力集中的位置,从而确定疲劳裂纹的位置。这本身就是用于计划无损检测程序和时间表的宝贵工具。

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