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首页> 外文期刊>Materials Science and Engineering >Observation austenite memory and significant enhancement of tensile properties during cyclic reverse martensite transformation in a Fe-Ni-C TRIP steel
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Observation austenite memory and significant enhancement of tensile properties during cyclic reverse martensite transformation in a Fe-Ni-C TRIP steel

机译:Fe-Ni-C TRIP钢在循环马氏体逆相变过程中观察到的奥氏体记忆并显着提高了拉伸性能

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摘要

In this study, the influence of reverse martensite transformation (reverse transformation) on micro-structure development and mechanical properties of Fe-24Ni-0.3C metastable austenitic TRIP steel was investigated. Microstructural characterization by electron backscatter diffraction (EBSD) system proved that large amount of low angle boundaries appeared after 1-cycle of reverse transformation (γ→α→γ). It is also found that the 1-cycle reversely transformed austenite and original austenite exhibited similar shape, size and orientations indicating that austenite memory appeared during reverse transformation. By increasing the number of reverse transformation cycle, fraction of low angle boundaries significantly increased. Uniaxial tensile test exhibited that yield and ultimate tensile strengths significantly improved even by 1-cycle reverse transformation comparing to the starting material. In addition, further continuation of reverse transformation up to 5- or 7-cycle causes gradual increase in yield and ultimate tensile strengths as well. The significant improvement in yield strength should be originated from increasing the dislocation density that are introduced during reverse transformation.
机译:在这项研究中,研究了马氏体逆相变(逆相变)对Fe-24Ni-0.3C亚稳态奥氏体TRIP钢的显微组织发展和力学性能的影响。电子反向散射衍射(EBSD)系统的微观结构表征证明,在反向循环(γ→α→γ)的1个循环后出现了大量的低角度边界。还发现,1周期逆相变奥氏体和原始奥氏体表现出相似的形状,大小和方向,表明在逆相变过程中出现了奥氏体记忆。通过增加反向变换循环的次数,低角度边界的比例显着增加。单轴拉伸试验表明,与起始材料相比,即使经过1个循环的逆向转化,屈服强度和极限拉伸强度也得到了显着提高。此外,进一步连续进行反向转化直至5或7个循环也会导致屈服和极限抗拉强度的逐渐提高。屈服强度的显着提高应源于增加在逆相变过程中引入的位错密度。

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