Wang Huanhuan, Pan Lifang, Chen Yong, Cai Zhihui, Zhao Yongshun, Liu Guangming
School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China.
School of Mechanical Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China.
Materials (Basel). 2024 Mar 8;17(6):1250. doi: 10.3390/ma17061250.
Austenitic stainless steel has high toughness and plasticity; however, it tends to exhibit low yield strength, which severely limits the widespread application of this steel. It can be strengthened by cold working; however, this will cause many defects in the structure. Therefore, annealing treatment must be carried out before use. In this paper, the effects of annealing treatment at different temperatures and times on the microstructure and mechanical properties of cold-rolled 305 stainless steel sheet were studied and the theoretical mechanism was further analyzed to provide better theoretical guidance for production and application. It was found that the microstructure grains obtained by annealing at 850 °C for 30 s were finer and more uniform, and the mechanical properties were also the best, which met the requirements of strong plasticity. Therefore, the rolling and annealing experiments could be carried out again under this annealing condition, and the requirements of the finished product could be finally obtained. At this time, the thickness of the plate was about 0.15 mm, the yield strength was 1238 MPa, and the permeability was below 1.02, which met the production requirements of the metal mask plate.
奥氏体不锈钢具有高韧性和可塑性;然而,它往往表现出低屈服强度,这严重限制了这种钢材的广泛应用。它可以通过冷加工强化;然而,这会在结构中产生许多缺陷。因此,使用前必须进行退火处理。本文研究了不同温度和时间的退火处理对冷轧305不锈钢薄板微观结构和力学性能的影响,并进一步分析了其理论机制,为生产和应用提供更好的理论指导。研究发现,在850℃下退火30秒得到的微观结构晶粒更细小、更均匀,力学性能也最佳,满足强塑性的要求。因此,可以在此退火条件下再次进行轧制和退火实验,最终得到成品的要求。此时,板材厚度约为0.15毫米,屈服强度为1238兆帕,磁导率低于1.02,满足金属掩膜板的生产要求。