Microstructural Deformation and Fracture of Reduced Activation Ferritic-Martensitic Steel EK-181 under Different Heat Treatment Conditions

被引:0
|
作者
Polekhina, N. A. [1 ]
Litovchenko, I. Yu. [1 ]
Akkuzin, S. A. [1 ]
Spiridonova, K. V. [1 ]
Osipova, V. V. [2 ]
Chernov, V. M. [3 ]
Leontyeva-Smirnova, M. V. [3 ]
机构
[1] Russian Acad Sci, Inst Strength Phys & Mat Sci, Siberian Branch, Tomsk 634055, Russia
[2] Natl Res Tomsk State Univ, Tomsk 634050, Russia
[3] Bochvar High Technol Res Inst Inorgan Mat JSC VNII, Moscow 123098, Russia
关键词
ferritic-martensitic steel EK-181; reduced activation steel; heat treatment; liquid lead; deformation; fracture; deformed microstructure; scanning electron microscopy; transmission electron microscopy; FERRITIC/MARTENSITIC STEELS; MECHANICAL-PROPERTIES; DEGREES-C; TEMPERATURE; BEHAVIOR; LEAD; TENSILE;
D O I
10.1134/S1029959924050035
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
TEM studies were performed to examine the effect of holding of dispersion-strengthened heat-resistant reduced activation 12% chromium ferritic-martensitic steel EK-181 in static liquid lead for 3000 h at 600 degrees C on the steel microstructure in comparison with the steel after conventional heat treatment by quenching and tempering at 720 degrees C. It was found that the steel microstructure has good thermal stability under the specified experimental conditions. Microstructural deformation of EK-181 steel was studied in the neck region of tensile specimens tested at the temperatures 20, 680, 700, and 720 degrees C with and without holding in liquid lead, and their fracture mechanisms were investigated. As a result of plastic deformation during tensile testing at room temperature, martensite plates and laths near the fracture surface are distorted and fragmented with the formation of new low-angle boundaries, and the dislocation density increases. At the deformation temperatures 680-720 degrees C, nearly equiaxed ferrite grains are formed, the density and size of second-phase particles (M23C6 and MX) increases due to dynamic strain aging, and the dislocation density decreases locally. As the test temperature rises, the degree of martensite tempering increases. At T >= 700 degrees C, some dynamic polygonization and dynamic recrystallization are observed. At elevated tension temperatures, ferrite coarsening is more significant in the specimens held in lead as compared to the conventionally treated material. The plastic deformation and fracture behavior of the steel are largely determined by the test temperature, rather than by the treatment mode.
引用
收藏
页码:529 / 540
页数:12
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