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首页> 外文期刊>Journal of Materials Engineering and Performance >Finite Element Modeling and Optimization of Superplastic Forming Using Variable Strain Rate Approach
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Finite Element Modeling and Optimization of Superplastic Forming Using Variable Strain Rate Approach

机译:变应变率法的超塑性成形有限元建模与优化

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摘要

Detailed finite element simulations were carried out to model and optimize the superplastic blow forming process using a microstructure-based constitutive model and a multiscale deformation stability criterion that accounts for both geometrical instabilities and microstructural features. Optimum strain rate forming paths were derived from the multiscale stability analysis and used to develop a variable strain rate forming control scheme. It is shown that the proposed optimization approach captures the characteristics of deformation and failure during superplastic forming and is capable of significantly reducing the forming time without compromising the uniformity of deformation. In addition, the effects of grain evolution and cavitation on the superplastic forming process were investigated, and the results clearly highlight the importance of accounting for these features to prevent premature failure.
机译:进行了详细的有限元模拟,以使用基于微观结构的本构模型和考虑几何不稳定性和微观结构特征的多尺度变形稳定性标准对超塑性吹塑过程进行建模和优化。从多尺度稳定性分析中得出最佳应变速率形成路径,并将其用于开发可变应变速率形成控制方案。结果表明,所提出的优化方法能够捕获超塑性成形过程中的变形和破坏特征,并且能够在不损害变形均匀性的情况下,显着减少成形时间。此外,研究了晶粒演化和空化对超塑性成形过程的影响,结果清楚地说明了考虑这些特征以防止过早失效的重要性。

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