Retained Austenite Transformation and Portevin–Le Chatelier Effect in 44CrMn2Si2Mo Steel under Tension

IF 1.8 4区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Physical Mesomechanics Pub Date : 2024-12-08 DOI:10.1134/S1029959924060043
S. I. Borisov, Yu. I. Borisova, E. S. Tkachev, S. M. Gaidar, R. O. Kaibyshev
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Abstract

The 44CrMn2Si2Mo steel heat treated by quenching and partitioning demonstrates a unique combination of strength characteristics: the yield stress σ0.2 = 1140 MPa, ultimate strength σВ = 1690 MPa, and elongation δ = 20.7%. Quenching and partitioning leads to the formation of a multiphase structure consisting of primary martensite, retained austenite, bainite, and secondary martensite. Primary martensite and bainite contain transition-metal carbides Fe2C. The high ductility of the steel is due to the transformation of retained austenite into strain-induced martensite during tension, which ensures high strain hardening. Stable plastic flow is observed at low strain, when a significant fraction of retained austenite is transformed into strain-induced martensite. The plastic flow instability, which appears as the Portevin–Le Chatelier effect on deformation curves and plastic flow localization in deformation bands, occurs at higher strains and is associated with the transformation of film-like retained austenite. The velocity of deformation bands decreases with a decrease in the volume fraction of retained austenite. Localization of plastic flow in the neck and fracture occur when the transformation of retained austenite into strain-induced martensite cannot provide strain hardening, and deformation bands lose their mobility.

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44CrMn2Si2Mo钢拉伸后残余奥氏体相变及Portevin-Le Chatelier效应
经淬火和分割热处理的44CrMn2Si2Mo钢表现出独特的综合强度特征:屈服应力σ0.2 = 1140 MPa,极限强度σВ = 1690 MPa,延伸率δ = 20.7%。淬火和分块导致形成由初生马氏体、残余奥氏体、贝氏体和次生马氏体组成的多相组织。初生马氏体和贝氏体含有过渡金属碳化物Fe2C。钢的高延展性是由于残余奥氏体在拉伸过程中转变为应变诱发马氏体,这保证了高应变硬化。在低应变条件下,大量残余奥氏体转变为应变诱导马氏体,形成稳定的塑性流动。塑性流动不稳定性表现为变形曲线上的Portevin-Le Chatelier效应和变形带中的塑性流动局部化,发生在较高应变下,并与膜状残余奥氏体的转变有关。变形带的速度随残余奥氏体体积分数的减小而减小。当残余奥氏体向应变诱导马氏体的转变不能提供应变硬化,变形带失去流动性时,塑性流动在颈部局部化并发生断裂。
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来源期刊
Physical Mesomechanics
Physical Mesomechanics Materials Science-General Materials Science
CiteScore
3.50
自引率
18.80%
发文量
48
期刊介绍: The journal provides an international medium for the publication of theoretical and experimental studies and reviews related in the physical mesomechanics and also solid-state physics, mechanics, materials science, geodynamics, non-destructive testing and in a large number of other fields where the physical mesomechanics may be used extensively. Papers dealing with the processing, characterization, structure and physical properties and computational aspects of the mesomechanics of heterogeneous media, fracture mesomechanics, physical mesomechanics of materials, mesomechanics applications for geodynamics and tectonics, mesomechanics of smart materials and materials for electronics, non-destructive testing are viewed as suitable for publication.
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