Hu Jun, Zhang Lei, Wang Xuanzheng, Lin Wenzhao, Wei Pingang, Cao Yiwei, Zhang Juanqi, Sun Kai, Yang Bing, Li Wentao
CNOOC Safety &Technology Service Co., Ltd., Tianjin 300450, China.
School of Power & Mechanical Engineering, Wuhan University, Wuhan 430072, China.
Materials (Basel). 2025 May 14;18(10):2284. doi: 10.3390/ma18102284.
The microstructure and tensile properties of 18Ni-300 maraging steel manufactured by selective laser melting (SLM) were investigated after different heat treatments and compared to the original samples. Heat treatment alters the microscopic morphology of the original sample, and the differences in the cross-sectional and longitudinal sectional morphology of the original sample become indistinguishable after heat treatment. Cellular and long strip structures can be observed in the original and aged samples. After solution aging, the cellular and long strip structures completely disappeared, being transformed into parallel and almost equal-length plate martensite. Additionally, inverted austenite and Ni(Ti, Al, Mo) precipitates were present. The microhardness increased from 310 HV to 710 HV, the nanohardness rose to 7.7 GPa, tensile strength reached 2068 MPa, and elongation to fracture improved to 4.5%. These optimal properties were achieved with solution treatment at 820 °C for 2 h and aging at 490 °C for 7 h.
对通过选择性激光熔化(SLM)制造的18Ni-300马氏体时效钢在不同热处理后的微观结构和拉伸性能进行了研究,并与原始样品进行了比较。热处理改变了原始样品的微观形态,原始样品横截面和纵截面形态的差异在热处理后变得难以区分。在原始样品和时效样品中可以观察到胞状和长条状结构。固溶时效后,胞状和长条状结构完全消失,转变为平行且长度几乎相等的板条马氏体。此外,还存在逆奥氏体和Ni(Ti,Al,Mo)析出相。显微硬度从310 HV增加到710 HV,纳米硬度升至7.7 GPa,抗拉强度达到2068 MPa,断裂伸长率提高到4.5%。通过在820℃下固溶处理2小时和在490℃下时效7小时获得了这些最佳性能。