Odnobokova Marina, Yanushkevich Zhanna, Kaibyshev Rustam, Belyakov Andrey
Institute for Physics of Advanced Materials, Ufa State Aviation Technical University, K. Marx 12, 450008 Ufa, Russia.
Belgorod State University, Pobeda 85, 308015 Belgorod, Russia.
Materials (Basel). 2020 May 2;13(9):2116. doi: 10.3390/ma13092116.
The ultrafine-grained microstructures and their effect on the yield strength of a 316L-type austenitic stainless steel processed by large strain cold/warm rolling and subsequent annealing were studied. A kind of continuous recrystallization developed during annealing, resulting in the evolution of uniform ultrafine-grained microstructures with relatively high residual dislocation densities. The development of such microstructure at 973 K led to excellent combination of tensile properties including high yield strength (σ > 900 MPa) and satisfactory plasticity (δ > 15%). A unique power law function between the annealed grain size and the dislocation density with a dislocation density exponent of -0.5 was obtained for these continuously recrystallized microstructures. A physically justified explanation of the observed structural/substructural strengthening is introduced.
研究了通过大应变冷/温轧及随后的退火处理得到的316L型奥氏体不锈钢的超细晶粒微观组织及其对屈服强度的影响。退火过程中发生了一种连续再结晶,导致形成具有相对较高残余位错密度的均匀超细晶粒微观组织。在973K下形成的这种微观组织使拉伸性能得到了优异的组合,包括高屈服强度(σ>900MPa)和令人满意的塑性(δ>15%)。对于这些连续再结晶的微观组织,得到了退火晶粒尺寸与位错密度之间独特的幂律函数,位错密度指数为-0.5。引入了对观察到的结构/亚结构强化的合理解释。