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Distribution of weld toe stress concentration factors on the central brace in two-planar CHS DKT-connections of steel offshore structures

机译:钢海上结构两平面CHS DKT连接中中心支撑处的焊趾应力集中因子分布

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Two major issues can be noted regarding the research efforts expended so far on the calculation of stress concentration factors (SCFs) in tubular joints: (1) majority of these research works focused on the values of the SCF at certain positions such as the saddle and the crown, and they have ignored the hot-spot stress at other locations along the weld toe; (2) significant effort has been devoted to the study of SCFs in various uni-planar tubular joints. Nevertheless, for multi-planar joints, which cover the majority of practical applications, very few investigations have been reported due to the complexity and high cost involved. In this paper, the effects of geometrical parameters on the SCF distribution along the weld toe of two-planar tubular DKT-joints under the axial loads are investigated. In order to study the multi-planar effect, SCF distribution in multi-planar joints is compared with the distribution in a uni-planar joint with the same geometrical properties. Based on the multi-planar DKT-joint FE models, which are verified against experimental results and the predictions of Lloyd's Register (LR) equations, a complete set of SCF database is constructed. The FE models cover a wide range of geometrical parameters. Through nonlinear regression analysis, a new set of SCF parametric equations is established for the accurate and reliable fatigue design of multi-planar DKT-joints under axial loads. An assessment study of these equations is conducted against the experimental data and the acceptance criteria recommended by the UK DoE.
机译:到目前为止,在计算管状接头应力集中因子(SCF)方面所做的研究工作中,可以注意到两个主要问题:(1)这些研究工作大部分集中在某些位置的SCF值,例如鞍座和冠,而他们忽略了焊趾沿其他位置的热点应力; (2)致力于研究各种单平面管状接头中的SCF。然而,对于涵盖大多数实际应用的多平面接头,由于涉及的复杂性和高成本,很少有研究报道。本文研究了在轴向载荷作用下,几何参数对沿二维平面管状DKT接头沿焊趾的SCF分布的影响。为了研究多平面效应,将多平面接头中的SCF分布与具有相同几何特性的单平面接头中的分布进行了比较。基于多平面DKT关节有限元模型,并针对实验结果和劳埃德寄存器(LR)方程的预测进行了验证,构建了一套完整的SCF数据库。 FE模型涵盖了广泛的几何参数。通过非线性回归分析,建立了一套新的SCF参数方程组,用于轴向载荷下多平面DKT接头的精确可靠的疲劳设计。对这些方程的评估研究是根据英国能源部推荐的实验数据和验收标准进行的。

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