4.5 Article

Study on Microstructure and In Situ Tensile Deformation Behavior of Fe-25Mn-xAl-8Ni-C Alloy Prepared by Vacuum Arc Melting

期刊

METALS
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/met11050814

关键词

Fe-25Mn-xAl-8Ni-C alloy; vacuum arc melting; microstructure; in situ tensile deformation behavior

资金

  1. Natural Science Basic Research Program of Shaanxi Province [2021JM-429]
  2. Project of equipment pre-research field fund [6140922010301]
  3. National Natural Science Foundation of China [51705391]

向作者/读者索取更多资源

The study demonstrates that with the increase of Al content, the microstructure of Fe-25Mn-xAl-8Ni-C alloys changes, leading to decreasing elongation and initially increasing and then decreasing tensile strength. In situ tensile testing reveals that crack initiation mainly occurs at the interface between austenite and NiAl compound during stretching.
In this study, Fe-25Mn-xAl-8Ni-C alloys (x = 10 wt.%, 11 wt.%, 12 wt.%, 13 wt.%) were prepared by a vacuum arc melting method, and the microstructure of this series of alloys and the in situ tensile deformation behavior were studied. The results showed that Fe-25Mn-xAl-8Ni-C alloys mainly contained austenite phase with a small amount of NiAl compound. With the content of Al increasing, the amount of austenite decreased while the amount of NiAl compound increased. When the Al content increased to 12 wt.%, the interface between austenite and NiAl compound and austenitic internal started to precipitate k-carbide phase. In situ tensile results also showed that as the content of Al increased, the alloy elongation decreased gradually, and the tensile strength first increased and then decreased. When the Al content was up to 11 wt.%, the elongation and tensile strength were 2.6% and 702.5 MPa, respectively; the results of in situ tensile dynamic observations show that during the process of stretching, austenite deformed first, and crack initiation mainly occurred at the interface between austenite and NiAl compound, and propagated along the interface, resulting in fracture of the alloy.

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