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Effect of Aluminum on Thermally Induced ε-Martensite for Fe-Mn-C TWIP Steels
Myungjin Lee, Chulho Park, Eunjoon Chun, Juseung Lee, Namhyun Kang
JWJ. 2019;37(1):89-93.   Published online 2019 February 26    DOI: https://doi.org/10.5781/JWJ.2019.37.1.12

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Effect of Aluminum on Thermally Induced ε-Martensite for Fe-Mn-C TWIP Steels
Journal of Welding and Joining. 2019;37(1):89-93   Crossref logo
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Thermally induced martensite properties in Fe–29%Ni–2%Mn alloy
Materials Letters. 2007;61(16):3315-3318   Crossref logo
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Effect of Cr Content on the TWIP Behavior in Fe-Mn-Cr Steels
Materials Today: Proceedings. 2015;2:S673-S676   Crossref logo
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High Mn TWIP steel and medium Mn steel
Automotive Steels. 2017;317-385   Crossref logo
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TWIP Mechanism in High-Mn Austenitic Steels and Its Effect on Steels Properties
Frontiers in Materials Processing, Applications, Research and Technology. 2017;321-331   Crossref logo
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Thermo-mechanical treatment of Fe–Mn–(Al, Si) TRIP/TWIP steels
Archives of Civil and Mechanical Engineering. 2012;12(3):299-304   Crossref logo
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Predicting of mechanical properties of Fe–Mn–(Al, Si) TRIP/TWIP steels using neural network modeling
Computational Materials Science. 2009;45(4):959-965   Crossref logo
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Multiscale Characterization of the Work Hardening Mechanisms in Fe-Mn Based TWIP Steels
steel research international. 2012;83(4):385-390   Crossref logo
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Stacking-Fault Energy Measurements in Fe-Mn-Al-Si Austenitic TWIP Steels
Microscopy and Microanalysis. 2011;17(S2):1888-1889   Crossref logo
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Development and characterization of high strength impact resistant Fe-Mn-(Al-, Si) TRIP/TWIP steels
Steel Research. 2002;73(6-7):294-298   Crossref logo
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