Heemann Lena, Mostaghimi Farhad, Schob Bernd, Schubert Frank, Kroll Lothar, Uhlenwinkel Volker, Steinbacher Matthias, Toenjes Anastasiya, von Hehl Axel
Leibniz Institute for Materials Engineering-IWT, Badgasteiner Str. 3, 28359 Bremen, Germany.
Department of Lightweight Structures and Polymer Technology, Technical University of Chemnitz, Reichenhainer Str. 31/33, 09126 Chemnitz, Germany.
Materials (Basel). 2021 Jun 4;14(11):3081. doi: 10.3390/ma14113081.
Medium manganese steels can exhibit both high strength and ductility due to transformation-induced plasticity (TRIP), caused by metastable retained austenite, which in turn can be adjusted by intercritical annealing. This study addresses the laser additive processability and mechanical properties of the third-generation advanced high strength steels (AHSS) on the basis of medium manganese steel using Laser Powder Bed Fusion (LPBF). For the investigations, an alloy with a manganese concentration of 5 wt.% was gas atomized and processed by LPBF. Intercritical annealing was subsequently performed at different temperatures (630 and 770 °C) and three annealing times (3, 10 and 60 min) to adjust the stability of the retained austenite. Higher annealing temperatures lead to lower yield strength but an increase in tensile strength due to a stronger work-hardening. The maximum elongation at fracture was approximately in the middle of the examined temperature field. The microstructure and properties of the alloy were further investigated by scanning electron microscopy (SEM), hardness measurements, X-ray diffraction (XRD), electron backscatter diffraction (EBSD) and element mapping.
中锰钢由于亚稳态残余奥氏体引起的相变诱发塑性(TRIP),可同时展现出高强度和延展性,而残余奥氏体又可通过临界区退火进行调整。本研究基于中锰钢,利用激光粉末床熔融(LPBF)工艺,探讨了第三代先进高强度钢(AHSS)的激光增材加工性能和力学性能。为进行研究,将一种锰含量为5 wt.%的合金进行气体雾化,并通过LPBF工艺进行加工。随后在不同温度(630和770 °C)以及三种退火时间(3、10和60分钟)下进行临界区退火,以调整残余奥氏体的稳定性。较高的退火温度会导致屈服强度降低,但由于加工硬化增强,抗拉强度会增加。断裂伸长率最大值大致处于所研究温度范围的中间位置。通过扫描电子显微镜(SEM)、硬度测量、X射线衍射(XRD)、电子背散射衍射(EBSD)和元素映射对合金的微观结构和性能进行了进一步研究。