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The finite element implementation, validation and verification of a plane stress yield criterion for use in sheet metal forming analysis

机译:用于钣金成形分析的平面应力屈服准则的有限元实现,验证和验证

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摘要

The Leacock 2006 orthotropic yield criterion, previously developed and experimentally verified by Leacock [1], was implemented as a rate independent, elastoplastic user material subroutine (UMAT) within the commercial finite element software PAM-STAMP 2G (TM). This paper focuses on the implementation and the computational and experimental validation of the Leacocic UMAT. The UMAT architecture incorporates the Associated Flow Rule (AFR), and the Cutting Plane Algorithm for the integration of the elastoplastic constitutive equations. The UMAT driven simulations of deep drawing and stretching operations were compared to data collected from laboratory performed experimental deep drawing of AA2024-O and AA6451-T4, and stretching of AA2024-T3 under the action of a hemispherical punch. The Hill family of yield criteria provided a relative comparison. The Leacock 2006 UMAT provided an accurate prediction of the punch force versus displacement, and in the prediction of the experimental major and minor strain in the stretching of AA2024-T3. The Leacock 2006 UMAT provided an acceptable accuracy of the earing profile and the experimental punch force versus displacement during the deep drawing of the aluminium alloys 2024-O and 6451-T4. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由Leacock [1]先前开发和实验验证的Leacock 2006正交异性屈服准则在商业有限元软件PAM-STAMP 2G(TM)中作为速率独立的弹塑性用户材料子例程(UMAT)实现。本文着重于Leacocic UMAT的实现以及计算和实验验证。 UMAT体系结构结合了关联流规则(AFR)和切割平面算法,用于集成弹塑性本构方程。将UMAT驱动的深冲和拉伸操作模拟与实验室进行的AA2024-O和A6455-T4的深冲实验以及在半球形冲头作用下拉伸A2022-T3的实验室采集的数据进行比较。希尔家族的产量标准提供了相对的比较。 Leacock 2006 UMAT提供了对冲头力与位移之间关系的准确预测,以及对Aa2024-T3拉伸过程中的实验主要应变和次要应变的准确预测。 Leacock 2006 UMAT在铝合金2024-O和6451-T4的深冲过程中提供了可接受的耳廓轮廓精度和实验冲压力与位移的关系。 (C)2015 Elsevier Ltd.保留所有权利。

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