Tempering behavior of an ultra-high-strength steel with 1.6 wt% Si at low to medium temperatures

被引:8
作者
Yuzbekova, D. [1 ,2 ]
Dudko, V. [1 ,2 ]
Kniaziuk, T. [1 ,3 ]
Kaibyshev, R. [1 ]
机构
[1] Russian State Agr Univ, Moscow Timiryazev Agr Acad, Moscow 127434, Russia
[2] Belgorod State Natl Res Univ, Belgorod 308015, Russia
[3] Cent Res Inst Struct Mat Prometey, Kurchatov Inst, Natl Res Ctr, St Petersburg 191015, Russia
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 2024年 / 896卷
关键词
Low-alloy ultra-high-strength steel; Transition carbides; Tempering behavior; Strength; Plasticity; Martensite; X-RAY-DIFFRACTION; LOW-ALLOY STEELS; RETAINED AUSTENITE; LATH MARTENSITE; MEDIUM-CARBON; CEMENTITE; SILICON; MICROSTRUCTURES; TOUGHNESS; PRECIPITATION;
D O I
10.1016/j.msea.2024.146264
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Tempering behavior of a 0.53%C-1.6%Si-0.9%Mn-0.76%Cr-0.14%V-0.05%Nb steel was examined. Water quenching produced lath martensite structure with a 10.5% volume fraction of retained austenite (RA) with film-like shape. Low temperature tempering (LTT) leads to precipitation of transition carbides and carbon partitioning between martensite and RA. The following precipitation sequence was found: martensite -> non-stoichiometric eta-carbide -> stoichiometric eta-carbide -> FeC. Highest density of non-stoichiometric FeC eta-carbides was found after isochronal tempering at 280 degrees C that provided attractive combination of high yield stress (YS) (1890 MPa) with a ductility of similar to 6% and a Charpy V-notch (CVN) impact energy of similar to 10 J/cm. At 400 degrees C, the replacement of non-stoichiometric eta-carbide by the stoichiometric one decreases strength and increases ductility due to 30% decrease in its volume fraction. No tempered martensite embrittlement was found due to the fact that Si effectively suppresses the precipitation of cementite at T <= 400 degrees C. The replacement of transition eta-carbide by boundary cementite after isochronal tempering at 500 degrees C leads to considerably decrease in YS down to 1360 MPa, while elongation to failure increases up to 9.3%. Effect of decomposition of RA on strength, ductility and fracture toughness is insignificant.
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页数:13
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