Revisiting the Common Practice of Sellars and Tegart’s Hyperbolic Sine Constitutive Model

S. Solhjoo
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引用次数: 2

Abstract

The Sellars and Tegart’s hyperbolic sine constitutive model is widely practiced in describing stress–strain curves of metals in hot deformation processes. The acceptance of this phenomenological model is owed to its versatility (working for a wide range of stress values) and simplicity (being only a function of strain, strain rate, and temperature). The common practices of this model are revisited in this work, with a few suggestions to improve its results. Moreover, it is discussed that, with the progress of data-driven models, the main reason for using the Sellars and Tegart’s model should be to identify reliable activation energies, and not the stress–strain curves. Furthermore, a piece of code (Hot Deformation Fitting Tool) has been created to automate the analysis of stress–strain curves with various models.
重新审视塞拉斯和特加特双曲正弦本构模型的共同实践
Sellars和Tegart的双曲正弦本构模型被广泛应用于描述金属热变形过程中的应力-应变曲线。这种现象学模型的接受归功于它的通用性(适用于大范围的应力值)和简单性(仅是应变、应变速率和温度的函数)。本文回顾了该模型的常用实践,并提出了一些改进其结果的建议。此外,还讨论了随着数据驱动模型的发展,使用Sellars和Tegart模型的主要原因应该是确定可靠的活化能,而不是应力-应变曲线。此外,还创建了一段代码(热变形拟合工具)来自动分析各种模型的应力-应变曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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