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Loading conditions constrained wrinkling behaviors of thin-walled sheet/ tube parts during metal forming

机译:金属成形过程中加载条件约束薄壁板/管零件的皱折行为

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摘要

With the increasing usages of high strength and lightweight materials, how to accurately predict and fully understand the wrinkling instability of thin-walled parts forming under various loading conditions, viz. stress states and normal constraints, is still a challenge for free-defect design and manufacturing. In this study, taking tensioncompression stress state w/wo normal constraints (Yoshida test and deep drawing of sheets) and compression stress state w/wo normal constraints (axial compression and rotary draw bending of tubes) as the comparative cases, two kinds of geometric imperfections (GI), viz., random thickness imperfection (RTI) and geometric deflection imperfection (GDI) are introuduced and implemented into dynamic explicit finite element (FE) models to realize more sensitive prediction of the wrinkling instability. And then, a systematic comparative study on the critical wrinkling behavior and final wrinkling morphology under varous loading conditions has been studied. It is found that the wrinkling is more prone to occur under tension-compression stress state, and the wrinkling of the processes without normal constraint are severer than those with normal constraints. Furthermore, the effects of material parameters on the wrinkling are inconsistent in different processes, the reason proved to be the different loading conditions. When the degree of normal constraint increases, the influence of material properties becomes negligible. Combining the geometric and material parameters, the key issues affecting the wrinkling of thin-walled parts from the perspective of loading condition have been expounded, laying the foundation and theoretical guidance for the study of wrinkling behavior under different mechanical states.
机译:随着高强度、轻量化材料的使用越来越多,如何准确预测和充分理解薄壁零件在各种载荷条件下的起皱失稳,即:。应力状态和正常约束对无缺陷设计和制造仍然是一个挑战。在本研究中,以拉伸压缩应力状态w/wo法向约束(吉田试验和板材拉深)和压缩应力状态w/wo法向约束(管的轴向压缩和旋转拉伸弯曲)为对比情况,两种几何缺陷(GI),即:。,将随机厚度缺陷(RTI)和几何挠度缺陷(GDI)引入动态显式有限元(FE)模型中,实现对起皱失稳的更灵敏预测。然后,对不同载荷条件下的临界起皱行为和最终起皱形态进行了系统的对比研究。研究发现,在拉压应力状态下,起皱更容易发生,无法向约束的起皱比有法向约束的起皱更严重。此外,材料参数对起皱的影响在不同的过程中是不一致的,原因是不同的加载条件。当法向约束程度增加时,材料特性的影响变得可以忽略不计。结合几何参数和材料参数,从载荷条件的角度阐述了影响薄壁零件起皱的关键问题,为研究不同机械状态下的起皱行为奠定了基础和理论指导。

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