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Metastable material conditions for forming of sheet metal parts combined with thermomechanical treatment

机译:结合热机械处理的钣金零件的亚稳态材料条件

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Developments of new forming processes become increasingly complex due to the combination of thermomechanical treatment and advanced forming technologies in manufacturing sheet metal parts. The development of this technology is coupled with better understanding of the thermomechanical behaviour of the implemented alloys in this process such as hardenable low carbon steels alloyed with austenite-stabilizing elements. Complex process conditions such as high heating rates in combination with plastic deformation, as well as cooling processes are investigated for boron-manganese steel 22MnB5. Contrary to conventional hot stamping processes, metastable material conditions are considered and subsequently implemented. Advantages are found such as increasing formability, lowered forming forces and enhanced material properties in formed components. The obtained results are successfully implemented in innovative forming processes, for example roll forming with integrated heat treatment and cushion-ram-pulsation (CRP) hot stamping processes. (C) 2016 CIRP.
机译:由于将热机械处理和先进的成形技术相结合,在钣金零件的制造中,新成形工艺的开发变得越来越复杂。该技术的发展与对该过程中所用合金(例如与奥氏体稳定元素合金化的可硬化低碳钢)的热机械行为的更好理解相结合。对于硼锰钢22MnB5,研究了复杂的工艺条件,例如高加热速率和塑性变形,以及冷却工艺。与传统的热冲压工艺相反,考虑并随后实施了亚稳态材料条件。发现诸如在成形部件中增加可成形性,降低成形力和增强材料性能的优点。所获得的结果已成功地在创新的成型工艺中实现,例如具有集成热处理和缓冲冲压脉冲(CRP)热冲压工艺的辊压成型。 (C)2016 CIRP。

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