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Influences of heat input, welding sequence and external restraint on twisting distortion in an asymmetrical curved stiffened panel

机译:热输入,焊接顺序和外部约束对非对称弯曲加劲板扭曲变形的影响

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Welding distortion not only degrades the fabrication accuracy of ship hull blocks but also decreases the productivity due to correction works. The accurate prediction of welding-induced distortion will help control the dimension accuracy. In this study, a computational approach based on inherent strain theory and interface element method was employed to efficiently and precisely estimate welding-induced deformation for large welded structures generated during assembly process. In the proposed approach, the local shrinkage due to heat input were considered by inherent strain components. On the other hand, the gap as well misalignment between the two parts to be joined, and the change of stiffness during assembly process were taken into account by interface elements. Meanwhile, the geometrical nonlinearity was included in the developed computational approach. In the current study, the features of welding deformation in an asymmetrical curved stiffened panel were numerically investigated by mean of the new computational approach. In addition, the influences of heat input, welding sequence and external restraint on the twisting distortion of the curved stiffened panel were further studied.
机译:焊接变形不仅降低了船体砌块的制造精度,而且由于校正工作而降低了生产率。焊接引起的变形的准确预测将有助于控制尺寸精度。在这项研究中,基于固有应变理论和界面元方法的一种计算方法被用来对组装过程中产生的大型焊接结构有效而精确地估计焊接引起的变形。在所提出的方法中,固有的应变分量考虑了由于热输入引起的局部收缩。另一方面,接口元件考虑了要连接的两个零件之间的间隙以及未对准以及组装过程中刚度的变化。同时,在开发的计算方法中包括了几何非线性。在当前的研究中,通过新的计算方法,对非对称弯曲加劲板中焊接变形的特征进行了数值研究。此外,进一步研究了热量输入,焊接顺序和外部约束对弯曲加劲板扭曲变形的影响。

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