Thermal stability of retained austenite with heterogeneous composition and size in austempered Fe-2Mn-1.5Si-0.4C alloy

IF 1.6 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Isij International Pub Date : 2024-05-21 DOI:10.2355/isijinternational.isijint-2024-044
Miku Watanabe, Goro Miyamoto, Yongjie Zhang, Satoshi Morooka, Stefanus Harjo, Yasuhiro Kobayashi, Tadashi Furuhara
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Abstract

The mechanical properties of TRIP steels depend on heterogeneities of chemical composition and grain size in the retained γ structure, although these heterogeneities have not been characterized in detail. Therefore, in this study, we quantitatively investigate the inhomogeneous carbon concentration and grain size distribution, and its effects on the thermal stability of the retained γ in Fe-2Mn-1.5Si-0.4C (mass%) TRIP steel using FE-EPMA, EBSD, Mössbauer spectroscopy, and in-situ neutron diffraction during bainitic transformation at 673 K. In-situ neutron diffraction experiments detects high-carbon γ evolving during bainite transformation, in addition to the original γ, and the time variation of the volume fraction of high-carbon γ agrees well with the fraction of γ retained at room temperature. Williamson-Hall analysis based on peak width suggests that heterogeneity of carbon content exists even within the high-carbon γ. Compositional analysis using FE-EPMA and three-dimensional atom probe directly revealed that fine filmy γ was highly enriched with carbon compared to larger blocky γ, and the carbon content in blocky γ decreases with increasing blocky γ size. DICTRA simulation qualitatively reproduces the size dependency of carbon enrichment into γ. It was also found that γ tends to be retained at higher carbon content and smaller γ grain size since the smaller grain size directly improves thermal stability and the smaller γ size further contributes to the thermal stability via enhanced carbon enrichment.

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奥氏体回火的 Fe-2Mn-1.5Si-0.4C 合金中具有异质成分和尺寸的残余奥氏体的热稳定性
TRIP 钢的机械性能取决于保留 γ 结构中化学成分和晶粒大小的异质性,但这些异质性尚未得到详细表征。因此,在本研究中,我们采用 FE-EPMA、EBSD、莫斯鲍尔光谱和原位中子衍射,定量研究了在 673 K 下贝氏体转变过程中,Fe-2Mn-1.5Si-0.4C(质量百分比)TRIP 钢中碳浓度和晶粒尺寸分布的不均匀性及其对保留 γ 热稳定性的影响。原位中子衍射实验检测到在贝氏体转变过程中,除了原始的 γ 之外,还有高碳 γ 在演变,而且高碳 γ 体积分数的时间变化与室温下保留的 γ 分数非常吻合。利用 FE-EPMA 和三维原子探针直接进行的成分分析表明,与较大的块状 γ 相比,细丝状 γ 的碳含量较高,且块状 γ 中的碳含量随块状 γ 尺寸的增大而降低。DICTRA 模拟定性地再现了γ 中碳富集的粒度依赖性,并发现碳含量越高、γ 晶粒尺寸越小,γ 越容易保留,因为较小的晶粒尺寸可直接提高热稳定性,而较小的γ 晶粒尺寸可通过增强碳富集进一步提高热稳定性。
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来源期刊
Isij International
Isij International 工程技术-冶金工程
CiteScore
3.40
自引率
16.70%
发文量
268
审稿时长
2.6 months
期刊介绍: The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials.
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