结合循环加载工具硬化数据的有限元模拟回弹预测

Jasri Mohamad, M. Sidek
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引用次数: 4

摘要

本文的目的是利用有限元(FE)模拟,结合由开发的循环加载工具提供的循环数据得出的运动学或混合硬化参数,来展示u形弯曲金属板成形过程中回弹预测的准确性。将回弹角形式的有限元模拟结果与实验结果进行了比较,验证了仿真结果的正确性。结果表明,混合硬化模型在预测回弹方面具有较好的模拟效果。这是由于该模型的各向同性硬化部分能够描述循环瞬态,而运动硬化部分能够改进对包辛格效应的描述。然而,运动硬化本身能够提供相对较好的回弹模拟,误差小于8%。总的来说,新开发的弯曲-非弯曲工具提供的循环加载数据对于模拟回弹预测是有价值的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Springback Prediction Using Finite Element Simulation Incorporated With Hardening Data Acquired From Cyclic Loading Tool
The aims of this article are to present the accuracy of springback prediction in U-bending sheet metal forming processes using finite element (FE) simulation incorporated with kinematics or mixed hardening parameters that are derived from cyclic data provided by the developed cyclic loading tool. The FE simulation results in the form of springback angles are compared with the experimental results for validation. It was found that the mixed hardening model provides better simulation results in predicting springback. This is due to the capability of the isotropic hardening part of this model to describe cyclic transient and the kinematic hardening part to improve description of the Bauschinger effect. Kinematic hardening however, on its own is capable of providing relatively good springback simulation illustrated by errors of less than 8 percent. Overall, the data provided by cyclic loading from the newly developed bending-unbending tool is considered valuable for simulating springback prediction.
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