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Optimization of bending condition for dieless U-bending process: development of dieless bending process for precision-bent tube II

机译:无模U型弯曲工艺的弯曲条件的优化:精密弯管II无模弯曲工艺的发展

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摘要

The present paper follows a previous paper by the same authors, in which the dieless bending process was proposed. In this process, compared to the conventional draw-bending process, the bending die is not necessary and high productivity can be realized. Although in the previous study the bending radius was well simulated by theoretical analysis under various bending conditions, a constant bending radius within the whole bending region had still not been realized. In the present study, the effects of bending condition control during bending on the bending radius distribution were clarified by numerical analyses and experiments. Moreover, the optimum conditions for realizing a constant bending radius distribution were calculated by inverse analysis. Finally, the calculated results were verified by experiments for various bending radii in the range of 300-1700 mm. As a result, the dieless bending process was successfully applied to the production of stainless steel tubes and nickel-based alloy tubes installed in nuclear and thermal power plants.
机译:本文是在同一作者的前一篇论文之后提出的,其中提出了无模弯曲工艺。在该过程中,与常规的拉弯过程相比,弯曲模具不是必需的,并且可以实现高生产率。尽管在先前的研究中,通过各种弯曲条件下的理论分析可以很好地模拟弯曲半径,但仍无法在整个弯曲区域内实现恒定的弯曲半径。在本研究中,通过数值分析和实验阐明了弯曲过程中弯曲条件控制对弯曲半径分布的影响。此外,通过反分析计算出实现恒定弯曲半径分布的最佳条件。最后,通过实验验证了300-1700 mm范围内各种弯曲半径的计算结果。结果,无模弯曲工艺成功地应用于生产安装在核电厂和热电厂的不锈钢管和镍基合金管。

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