有限元法
材料科学
模数
弯曲
Chord(对等)
杨氏模量
复合材料
弹性模量
切线模量
体积模量
三点弯曲试验
动态模量
结构工程
工程类
动态力学分析
计算机科学
分布式计算
聚合物
作者
Menglong Xing,Haijun Wang,Jiyan Liu,Yutao Fu,Fengshan Du
出处
期刊:Materials
[MDPI AG]
日期:2023-03-23
卷期号:16 (7): 2571-2571
被引量:1
摘要
Nonlinear unloading plays an important role in predicting springback during plastic forming process. To improve the accuracy of springback prediction which could provide a guide for precision forming, uniaxial tensile tests and uniaxial loading-unloading-loading tensile tests on SUS304 stainless steel were carried out. The flow stress mathematical model and chord modulus mathematical model were calibrated according to the test results. A constant elastic modulus three-point bending finite element model (E0FEMB) and a constant elastic modulus roll forming finite element model (E0FEMR) were established in MSC.MARC. The chord modulus was output by the PLOTV subroutine to determine the mean modulus of different regions, and the mean modulus three-point bending finite element model (E¯cFEMB) and the mean modulus roll forming finite element model (E¯cFEMR) were defined. The constant modulus finite element model (E0FEM) simulation results and the mean modulus finite element model (E¯cFEM) simulation results were compared with the three-point bending tests and roll forming tests test results. The difference between the simulation results and the test results was small, indicating that the mean modulus was feasible to predict the springback, which verified the suitability of the E¯cFEM.
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