The study of the structure and mechanical properties of T and K + Al + N + Ti steels after casting and hot plastic deformation (HPD)

O. Babachenko, N. Filonenko, H. Kononenko
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Abstract

Purpose. To perform comparative studies of structural features and mechanical properties of test steel for railway wheels with microalloy complex Al + N + Ti and known steel for high-strength railway wheels of brand T, microalloyed with vanadium. Methodology. Microstructural, micro-X-ray spectral and X-ray phase analyzes were used to determine the structural state of the alloys. Results. Comparative analysis of the structure and mechanical properties of steels for high-strength railway wheels of brand T and K + Al + N + Ti. It is shown that in K + Al + N + Ti steel after crystallization the structure becomes finer-grained and increase in the volume fraction of perlite was observed in comparison with steel of T brand. It was found that the HPD leads to the decrease in the volume fraction and size of oxides, and in aluminum oxides Al2O3 there is a partial replacement of aluminum atoms by iron and titanium atoms. Originality. It is shown that the reduction of vanadium content in steel and complex alloying with aluminum, titanium and nitrogen leads to the formation of the finer-grained structure and increase in the volume fraction of fine perlite. In the microstructure of K + Al + N + Ti steel, the formation of oxides, nitrides and carbonitrides was observed, which were located along the grain boundaries and in the body of the perlite grain. It was shown for the first time that HPD leads to the fact that in the inclusions of aluminum oxides Al2 O3 the partial replacement of aluminum atoms by atoms of iron or titanium, with the formation of oxides of Fe2(Al)O3 and (Al, Ti)2O 3, take place. Practical value. The use of complex alloying of steel leads to improvement of mechanical properties: increase in toughness at the high level of hardness and strength of steel grade K + Al + N + Ti in comparison with steel of brand T.  
T和K + Al + N + Ti钢铸造及热塑性变形(HPD)后组织与力学性能的研究
目的。对Al + N + Ti复合微合金铁路车轮用试验钢与已知T牌钒微合金高强度铁路车轮用钢的结构特征和力学性能进行对比研究。方法。采用显微组织分析、微x射线光谱分析和x射线物相分析确定合金的组织状态。结果。T牌和K + Al + N + Ti牌高强度铁路车轮用钢的组织和力学性能比较分析。结果表明,与T牌钢相比,K + Al + N + Ti钢结晶后组织晶粒细化,珍珠岩体积分数增加。结果表明,HPD使氧化铝的体积分数和尺寸减小,氧化铝Al2O3中铝原子部分被铁和钛原子取代。创意。结果表明:降低钢中钒含量和与铝、钛、氮复合合金化,有利于形成细晶组织,提高了细珍珠岩的体积分数;在K + Al + N + Ti钢的显微组织中,观察到氧化物、氮化物和碳氮化物的形成,这些氧化物、氮化物和碳氮化物分布在晶界和珍珠岩晶粒体中。首次证明了HPD导致铝氧化物al2o3包裹体中铝原子部分被铁或钛原子取代,形成Fe2(Al)O3和(Al, Ti)2O 3氧化物。实用价值。钢的复合合金的使用导致机械性能的改善:与T牌钢相比,K + Al + N + Ti钢的硬度和强度在高水平上增加了韧性。
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