Tkachev Evgeniy, Borisov Sergey, Borisova Yuliya, Kniaziuk Tatiana, Gaidar Sergey, Kaibyshev Rustam
Laboratory of Mechanical Properties of Nanostructured Materials and Superalloys, Belgorod State University, 308015 Belgorod, Russia.
Laboratory of Advanced Steels for Agricultural Machinery, Russian State Agrarian University-Moscow Timiryazev Agricultural Academy, 127550 Moscow, Russia.
Materials (Basel). 2023 May 19;16(10):3851. doi: 10.3390/ma16103851.
Quenching and partitioning (Q&P) treatments were applied to 0.25C steel to produce the microstructures that exhibit an improved balance of mechanical properties. The simultaneous bainitic transformation and carbon enrichment of retained austenite (RA) during the partitioning stage at 350 °C result in the coexistence of RA islands with irregular shapes embedded in bainitic ferrite and film-like RA in the martensitic matrix. The decomposition of coarse RA islands and the tempering of primary martensite during partitioning is accompanied by a decrease in the dislocation density and the precipitation/growth of η-carbide in the lath interiors of primary martensite. The best combinations of a yield strength above 1200 MPa and an impact toughness of about 100 J were obtained in the steel samples quenched to 210-230 °C and subjected to partitioning at 350 °C for 100-600 s. A detailed analysis of the microstructures and the mechanical properties of the steel subjected to Q&P, water quenching, and isothermal treatment revealed that the ideal strength-toughness combinations could be attributed to the mixture of the tempered lath martensite with finely dispersed and stabilized RA and the particles of η-carbide located in the lath interiors.
对0.25C钢进行淬火和配分(Q&P)处理,以获得具有改善的力学性能平衡的微观组织。在350℃的配分阶段,贝氏体转变和残余奥氏体(RA)的碳富集同时发生,导致不规则形状的RA岛共存于贝氏体铁素体中,且薄膜状RA存在于马氏体基体中。配分过程中粗大RA岛的分解和初生马氏体的回火伴随着位错密度的降低以及初生马氏体板条内部η碳化物的析出/长大。在淬火至210-230℃并在350℃下进行100-600s配分的钢样品中,获得了屈服强度高于1200MPa且冲击韧性约为100J的最佳组合。对经过Q&P处理、水淬和等温处理的钢的微观组织和力学性能进行详细分析表明,理想的强度-韧性组合可归因于回火板条马氏体与精细分散且稳定的RA以及位于板条内部的η碳化物颗粒的混合。