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Hydroforming of Toroidal Bellows: Process Simulation and Quality Control

机译:环形波纹管的液压成形:过程仿真和质量控制

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摘要

Having higher capacity to undertake pressures and larger compensation ability compared with the U-shape bellows, toroidal or Ω-shape bellows are being more and more widely used in engineering. The wave-shape and wall thickness reduction of bellows are the most important parameters for measuring the hydroforming quality of the bellows. In order to provide references for actual manufacturing, it is valuable to study the factors influencing the hydroforming process and quality of the bellows. In this paper, finite element simulations of the hydroforming process of a monolayer and single-wave toroidal bellows and a two-layer and four-wave toroidal bellows were carried out. Stress and strain distributions before and after unloading were analyzed and the wave height and wall thickness reduction were examined. The numerical results were verified by the actual hydroforming measurements. In addition, ranges of the significant structural or operating factors for producing better bellows were studied and a formula to compute the wall thickness reduction was fitted based on the sufficient numerical results of the hydroforming simulations.
机译:与U形波纹管相比,具有更高的承接压力和更大的补偿能力,环形或ω形波纹管在工程中越来越广泛地使用。波纹管的波形和壁厚减小是用于测量波纹管的液压成形质量的最重要参数。为了提供实际制造的参考,研究影响液压成形过程的因素和波纹管的质量是有价值的。在本文中,进行了单层和单波环形波纹管的液压成形过程的有限元模拟和双层和四波环形波纹管。分析卸载前后的应力和应变分布,检查波高和壁厚减少。通过实际的液压成形测量验证数值结果。此外,研究了用于生产更好波纹管的显着结构或操作因素的范围,并基于液压成形模拟的足够数值结果,安装了计算壁厚减少的公式。

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