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首页> 外文期刊>Journal of Materials Engineering and Performance >A Comparative Study on Formability of the Third-Generation Automotive Medium-Mn Steel and 22MnB5 Steel
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A Comparative Study on Formability of the Third-Generation Automotive Medium-Mn Steel and 22MnB5 Steel

机译:第三代汽车介质 - Mn钢和22MnB5钢材的成形性比较研究

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Third-generation advanced automotive medium-Mn steel, which can replace 22MnB5 steel, was newly developed to improve the lightweight and crashworthiness of automobile. Studies on the formability and simulation method of medium-Mn steel have just been initiated. In this study, finite element simulation models of square-cup deep drawing were established based on various material property experiments and validated by experiments. The effects of blank holder force (BHF), fillet radii of tools (die and punch) on the maximum drawing depth (MDD), thickness distribution of the formed products, and the microstructure before and after forming were investigated and compared with those on 22MnB5 steel. Results show that the MDD of the two steels decreased with increased BHF but increased with the fillet radius of punch; however, the fillet radius of die showed no significant effect on the MDD for both steels. Compared with hot-formed 22MnB5 steel, the martensitic transformation of the hot-formed medium-Mn steel is rarely influenced by the process parameters; thus, it holds the complete, fine-grained, and uniform martensitic microstructure. Moreover, the medium-Mn has better formability, lower initial blank temperature, and smaller impact of BHF and fillet radius of tools on the hot-formed product. Thus, a theoretical basis for the replacement of 22MnB5 steel by medium-Mn steel in hot forming process is provided.
机译:新开发的,可以代替22mnb5钢的第三代先进的汽车中型钢,以提高汽车的轻质和耐火性。刚刚开始了中-MN钢的可成形性和仿真方法的研究。在该研究中,基于各种材料特性实验建立了方杯深图的有限元仿真模型,并通过实验验证。研究了坯料支架力(BHF),工具(模具和冲头)对最大拉伸深度(MDD),形成的厚度分布的效果,形成了成立前后的微观结构,与22MnB5的效果相比钢。结果表明,两个钢的MDD随着BHF的增加而降低,但用冲头的圆角半径增加;然而,模头的圆角半径对两个钢的MDD没有显着影响。与热形成的22Mnb5钢相比,热成形介质-MN钢的马氏体变换很少受工艺参数的影响;因此,它具有完整,细粒度和均匀的马氏体微观结构。此外,培养基-MN具有更好的可成形性,较低的初始空白温度和BHF和圆角的较小影响在热成形产品上的工具。因此,提供了通过在热成形过程中通过中Mn钢更换22mNB5钢的理论依据。

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