INVESTIGATION OF THE PROCESS WINDOW FOR DEFORMATION INDUCED FERRITE TO IMPROVE THE JOINABILITY OF PRESS-HARDENED COMPONENTS

B. Behrens, K. Brunotte, H. Wester, E. Stockburger
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引用次数: 2

Abstract

Due to their high tensile strengths increasing the crashworthiness of the vehicles, ultra-high strength steels are increasingly used in the automotive industry, for example in components like B-pillars or tunnel. 22MnB5 is a premier candidate for this cause, since it can be press-hardened and phase-transformed into the martensitic phase, resulting in high hardness and tensile strength. However, complications can arise in the assembly of press-hardened components since conventional mechanical joining processes have their limitations due to high forces required for joining press-hardened steels, especially in multi-sheet layers. Therefore, this study focuses on the determination of an optimum process window to influence the 22MnB5 microstructure thermo-mechanically during press hardening, causing a local softening. This so-called deformation-induced ferrite improves ductility at the desired locations to ease the mechanical joining operation in the assembly. Investigations are performed on a forming dilatometer varying the cooling rate, the introduced amount of plastic strain and the forming temperature along with metallographic as well as microhardness measurements. Based on the laboratory tests, a process window of the deformation induced ferrite is derived for an application in a forming press.
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形变诱导铁素体提高冲压硬化件焊接性能的工艺窗口研究
由于超高强度钢的高抗拉强度增加了车辆的耐撞性,超高强度钢越来越多地用于汽车工业,例如b柱或隧道等部件。22MnB5是这一原因的首要候选者,因为它可以被压硬化并相转变为马氏体相,从而获得高硬度和抗拉强度。然而,由于传统的机械连接工艺在连接压硬化钢时需要很高的力,特别是在多层板材中,因此在装配压硬化部件时可能会出现并发症。因此,本研究的重点是确定最佳工艺窗口,以影响22MnB5在压力硬化过程中的热机械微观结构,导致局部软化。这种所谓的变形诱导铁素体提高了所需位置的延展性,从而简化了装配中的机械连接操作。在成形膨胀仪上进行了研究,改变了冷却速度、引入的塑性应变量和成形温度,以及金相和显微硬度测量。在室内试验的基础上,导出了在成形压力机中应用的变形诱导铁氧体的过程窗口。
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