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首页> 外文期刊>Thin-Walled Structures >Static strength of doubler plate reinforced tubular T/Y-joints subjected to brace compressive loading: Study of geometrical effects and parametric formulation
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Static strength of doubler plate reinforced tubular T/Y-joints subjected to brace compressive loading: Study of geometrical effects and parametric formulation

机译:支撑压缩载荷作用下双板增强管状T / Y接头的静强度:几何效应和参数公式研究

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摘要

In this study, the ultimate strength, initial stiffness, and failure mechanisms of tubular TN-joints reinforced with doubler plate under axially compressive load are numerically investigated. At the first step, a finite element (FE) model was developed and verified against the data available from eight experimental tests. At the next step, 210 FE models were generated and analyzed to evaluate the effect of joint geometry and doubler plate size on the static strength of doubler plate reinforced TN-joints under axially compressive load. Results showed that the ultimate strength of a doubler plate reinforced TN-joint can be up to 295% of the strength of the corresponding unreinforced joint. Also, doubler plate reinforcement method can considerably increase initial stiffness and improve the failure modes of tubular T/Y-joints subjected to axially compressive load. Afterwards, the deformed shapes of doubler plate and collar plate reinforced T-and Y-joints are compared. Despite the considerable effect of the doubler plate on the static strength, its feasible application during the joint fabrication, and the frequent usage of CHS TN joints in offshore jacket-type platforms, the ultimate strength, initial stiffness, and failure modes in doubler plate reinforced Y-joints under axially compressive load have not been studied. Also, so far no design equation is available to determine the ultimate strength of T-and Y-joints reinforced with doubler plate under the axially compressive load. Hence, after the parametric investigation, a new formula is derived, through nonlinear regression analysis, to determine the ultimate strength in such case. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,数值研究了在轴向压缩载荷下用双层板加强的管状TN节点的极限强度,初始刚度和破坏机理。第一步,开发了有限元(FE)模型,并根据来自八个实验测试的可用数据进行了验证。在下一步中,生成了210个有限元模型并进行了分析,以评估接头几何形状和双层板尺寸在轴向压缩载荷下对双层板增强TN接头静强度的影响。结果表明,双板加强型TN接头的极限强度可以达到相应无筋接头强度的295%。而且,双板加强方法可以显着增加初始刚度并改善管状T / Y接头在轴向压缩载荷下的破坏模式。然后,比较了倍增板和领板增强的T型和Y型接头的变形形状。尽管双层板对静强度有显着影响,但在接头制造过程中可行,并且在海上夹套式平台中频繁使用CHS TN接头,但双层板的极限强度,初始刚度和破坏模式却有所增强尚未研究轴向压缩载荷下的Y型接头。而且,到目前为止,尚无设计方程式可确定在轴向压缩载荷下用双层板加强的T型和Y型接头的极限强度。因此,在参数研究之后,通过非线性回归分析得出了一个新公式,以确定这种情况下的极限强度。 (C)2016 Elsevier Ltd.保留所有权利。

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