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Study on the hydroforming technology of reinforced s-shaped bellows

机译:钢筋S形波纹管液压成形技术研究

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摘要

Reinforced s-shaped bellows is a kind of typical reinforced metal bellows that can withstand high pressure. Hydroforming process and its simulation technology of reinforced s-shaped bellows were investigated in this paper. The hydroforming technology of reinforced s-shaped bellows is a severe plastic deformation process. Most area of the bellows is in the state of severe plastic yielding with a maximum equivalent plastic strain of 30.6%. At the same time, the wall thickness shows a linear thinning trend from wave trough to peak. The control of hydraulic pressure is a key factor of hydroforming process. The best hydroforming hydraulic pressure is 12 MPa, which is in good agreement with the designed shape. At last, the key factors affecting plastic strain and wall thickness thinning of the hydroforming process were revealed. Plastic strain and wall thickness thinning of the large-pitch bellows in the hydroforming process are obviously higher than those of the small-pitch ones. The waveform parameters directly affect the hydroforming process. However, the influences of initial wall thickness and number of layers of the bellows were not obvious. The maximum thinning rate of the bellows basically maintains around 20%.
机译:增强的S形波纹管是一种典型的加强金属波纹管,可以承受高压。本文研究了钢筋S形波纹管的液压成形过程及其仿真技术。增强S形波纹管的液压成形技术是严重的塑性变形过程。波纹管的大部分区域处于严重塑料的状态,最大当量塑性应变为30.6%。同时,壁厚显示从波浪槽到峰值的线性稀释趋势。液压控制是液压成形过程的关键因素。最佳的液压成形液压为12MPa,与设计的形状很好。最后,揭示了影响塑料应变和壁厚细化的液压成形过程的关键因素。塑料应变和壁厚在液压成形过程中的大型波纹管稀疏明显高于小间距的波纹管。波形参数直接影响液压成形过程。然而,初始壁厚和波纹管的层数的影响并不明显。波纹管的最大减薄率基本上保持大约20%。

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