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Effects of Hydroforming Process on Fatigue Life of Reinforced S-Shaped Bellows

机译:液压成形过程对增强S形波纹管疲劳寿命的影响

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Reinforced s-shaped bellows, which can withstand high pressure, is a kind of typical reinforced metal bellows. The hydroforming process is a common forming method of reinforced S-shaped bellows, and the forming process is a severe plastic deformation process. The hydroforming process and its effects on the fatigue life of reinforced s-shaped bellows were discussed in the present study. Different levels of plastic strain and wall thickness thinning were detected in the hydroforming process. The maximum plastic strain can reached 32%, while the maximum wall thickness thinning ratio is 20%, which occurs on the wave peak. Mechanical characteristics of reinforced s-shaped bellows were discussed considering the effects of hydroforming process. The maximum stress appears on the upper and lower ends, which is the weak part of the structure. Fatigue life of the reinforced s-shaped bellows was analyzed based on the modified Manson-Coffin method. Fatigue life analysis of reinforced s-shaped bellows was carried out and the effects of hydroforming process were discussed. The hydroforming process will lead to a decline in fatigue life, which needs to be considered well in the structural design and analysis.
机译:增强的S形波纹管,可以承受高压,是一种典型的加强金属波纹管。液压成形过程是增强S形波纹管的常见形成方法,形成过程是严重的塑性变形过程。本研究讨论了液压成形过程及其对增强S形波纹管疲劳寿命的影响。在液压成形过程中检测到不同水平的塑料应变和壁厚细化。最大塑料应变可达到32%,而最大壁厚稀薄比率为20%,在波峰上发生。考虑到液压成形过程的影响,讨论了增强S形波纹管的机械特性。最大应力出现在上端和下端,这是结构的弱部分。基于改进的Manson-Coffin方法分析了增强的S形波纹管的疲劳寿命。进行了钢筋S形波纹管的疲劳寿命分析,讨论了液压成形过程的影响。液压成形过程将导致疲劳寿命的下降,这在结构设计和分析中需要考虑。

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