Comparison of Constitutive Models for predicting the formability of SS 304 by tubular hydroforming process

IF 0.5 Q4 ENGINEERING, MANUFACTURING
P. V. Reddy
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引用次数: 0

Abstract

Finite Element (FE) simulation of sheet/tube forming precision depends mainly on the accuracy of the constitutive modeling. The present paper aim is to compare the constitutive models to fit the stress-strain curves. The accurate deformation behavior of the SS 304 tubes depends on the constitutive modeling of hardening behavior. Deformation data of the tensile specimens cut from tubular sample were collected by conducting Uniaxial tensile tests (UTT) at three different rolling directions. Five constitutive relationships were then recognized by fitting the true stress and strain data with the constitutive models of Hollomon, Power, Krupowsky, Voce and Ghosh, and the fitting accuracy were analyzed and compared. Effects of hardening models on Forming Limit Curves (FLC), pressure loading and bulge height of the hydroformed tube were then studied. The obtained FLC from the simulations were compared with experimental FLC to predict the accuracy of the hardening models.
预测管状高压成形性能的本构模型比较
板管成形的有限元模拟精度主要取决于本构建模的精度。本文的目的是比较本构模型来拟合应力-应变曲线。SS 304管的精确变形行为取决于硬化行为的本构建模。通过三种不同轧制方向的单轴拉伸试验(UTT),采集了管状试样的拉伸试样变形数据。将真实应力应变数据与Hollomon、Power、Krupowsky、Voce和Ghosh的本构模型进行拟合,识别出5种本构关系,并对拟合精度进行了分析比较。研究了硬化模型对高压成形管成形极限曲线(FLC)、压力载荷和胀高的影响。将模拟得到的FLC与实验FLC进行了比较,以预测硬化模型的精度。
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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来源期刊
CiteScore
2.70
自引率
0.00%
发文量
21
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