57
10.3 Discussion
The construction of FeMnAlC steel phase diagram using Thermocalc software, and the dynamic characterization of FeMnAlC
alloy system using ANSYS/AUTODYN will be presented and the results will be compared to the dynamic characterization
of the well-established 304 austenitic steel under similar impact conditions.
References
1. The characteristics of austenitic steel. https://www.thebalance.com/metal-profile-austenitic-stainless-2340126
2. Acselrad, O., de Souza, A.R., Kalashnikov, I.S., Camargo Jr., S.S.: A first evaluation of the abrasive wear of an austenitic FeMnAlC steel. Wear.
257, 999–1005 (2004)
3. https://www.google.com/search?q=austenitic+structure&client=firefox-b-1-e&sxsrf=ACYBGNTL5aeYehcWFZbHDMJrNwoa3wZmdQ
:1580312387726&tbm=isch&source=iu&ictx=1&fir=tIia-LG7xsZYDM%253A%252CRyBnjE0HC6lnAM%252C_&vet=1&usg=AI4_kQNIk_ViunopZ1RPn6Z02VzV9xR3Q&sa=X&ved=2ahUKEwitr4S0kqnnAhWxTd8KHRbdDEsQ9QEwAHoECAkQAw#imgdii=6A77Wy
EKnI-v0M:&imgrc=tIia-LG7xsZYDM:&vet=1
4. Huang, H.H., Chuang, T.H.: Erosion- and wear-corrosion behavior of FeMnAl alloys in NaCl solution. Mater. Sci. Eng. A. 292, 90–95 (2000)
5. Zhang, Y.T., Li, X.Y., Li, D.Z., Li, Y.Y.: Phase diagram calculation and experiment for Fe-Mn-Al system at different temperatures. AIP Conf.
Proc. 986, 132 (2008). https://doi.org/10.1063/1.2900336
6. Shangping, C., Radhakanta, R., Arunansu, H., Ray, K.K.: Current state of Fe-Mn-Al-C low density steels. Prog. Mater. Sci. 89, 345–391 (2017)
Fig. 10.2 The effects of Mn and Al addition on the phase constituent and the phase fields of the Fe–C system. (a) Fe–C; (b) Fe–15Mn–C; (c)
Fe–7Al–C. The dashed line in (c) indicates the A2 to B2 transition temperature caused by Al addition [6]
10 Simulated Construction of FeMnAlC Alloy System Phase Diagram and Study of Its Dynamic Characterization
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