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Applications of inherent strain and interface element to simulation of welding deformation in thin plate structures

机译:固有应变和界面元在薄板结构焊接变形模拟中的应用

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摘要

Welding-induced distortion not only reduces largely manufacturing accuracy but also decreases significantly productivity due to correction works. If welding distortion can be predicted through a simple and practical method beforehand, the predictions will be helpful for taking active as well as appropriate measures to control the dimension accuracy. Based on inherent strain theory and interface element formulation, we developed a practical prediction system to compute the accumulated distortion during the welding assembly process in the current study. Using the developed prediction method, we calculated the welding distortion in a thin plate structure with considering both the shrinkage due to heat input and the gap/misalignment generated during assembly process. Meanwhile, we investigated the influences of assembly sequence and gap correction on the final distortion.
机译:焊接引起的变形不仅大大降低了制造精度,而且由于校正工作还大大降低了生产率。如果可以通过简单实用的方法预先预测焊接变形,则该预测将有助于采取主动以及适当的措施来控制尺寸精度。基于固有应变理论和界面元素公式,在当前研究中,我们开发了一种实用的预测系统来计算焊接组装过程中的累积变形。使用发达的预测方法,我们考虑了热量输入引起的收缩和装配过程中产生的间隙/未对准,计算了薄板结构中的焊接变形。同时,我们研究了组装顺序和间隙校正对最终变形的影响。

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