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Precision Forming Technology for Crimping of Large Straight Welded Pipes

机译:大型直焊管压接的精密成形技术

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Crimping plays a pivotal role in the production of large-diameter submerged-arc welded pipes. In the crimping forming process, predicting the springback while considering the real-time variation of material parameters is a major challenge faced by many researchers, which has a direct impact on the quality of the welded pipe. To address this problem, the precision forming technology of crimping was developed. The engineering theory of plastic bending was used to investigate the crimping forming process. Two methods, namely, the slope reverse method and the optimization method, were adopted to identify the material parameters. The results showed that the inverted material parameters can be evaluated in real time based on the analytical model of crimping. The maximum relative error of the identification value is less than 4%. Therefore, the springback and displacement during crimping can be predicted dynamically to control the crimping forming quality. Thus, this project provides an important opportunity to achieve precise forming through crimping.
机译:压接在大直径浸没电弧焊接管生产中起着枢轴作用。在压接成形过程中,在考虑材料参数的实时变化的同时预测回弹是许多研究人员面临的主要挑战,这对焊接管的质量直接影响。为了解决这个问题,开发了压接的精确形成技术。塑性弯曲工程理论用于研究压接成型过程。采用两种方法,即,斜率反向方法和优化方法,以识别材料参数。结果表明,倒材料参数可以基于压接的分析模型实时评估。识别值的最大相对误差小于4%。因此,可以动态地预测压接期间的回弹和位移以控制压接形成质量。因此,该项目提供了通过卷边实现精确形成的重要机会。

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