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Numerical Study on Mechanism of Twisting Deformation Observed in Bilge Block during Welding Assembly and Its Control

机译:焊接组件舱底砌块中观察到扭转变形机理的数值研究及对照

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It is generally experienced by engineers in shipyards that it is difficult to predict and control distortions of curved 3D blocks during assembly. Even in case of bilge blocks in the parallel part, twisting of the block is often observed. So far, there is no theoretical explanation why it happens. According to the Authors’ understanding, the distortion of the welded structure is produced by two causes. One is the local shrinkage introduced by welding, such as transverse shrinkage and angular distortion. The other is the gap and misalignment introduced during sequential welding process. In this study, the mechanism of the twisting deformation is investigated from these points of views. For this, elastic shell FEM developed by authors based on the concept of inherent deformation and interface element is employed. Further, the method to straighten the twisting distortion by line heating is proposed based on the numerical study.
机译:它通常由造船厂的工程师经历,即在组装期间难以预测和控制弯曲3D块的扭曲。即使在平行部分的舱底块的情况下,通常观察到块的扭曲。到目前为止,没有理论解释为什么会发生这种解释。根据作者的理解,焊接结构的变形是由两种原因产生的。一个是通过焊接引入的本地收缩,例如横向收缩和角度失真。另一个是连续焊接过程中引入的差距和未对准。在该研究中,从这些视图中研究了扭曲变形的机制。为此,采用基于固有变形和接口元件概念的作者开发的弹性壳FEM。此外,基于数值研究提出了通过线加热伸直扭曲变形的方法。

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