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Showing results 1 to 4 of 4

  • Kim, C. W.
  • Kwon, S. I.
  • Lee, B. H.
  • Moon, J. O.
  • Park, S. J.
  • Lee, J. H.
  • Hong, H. U.
  • 2016-09
  • Materials Science and Engineering a: Structural Materials Properties Microstructure and Processing, v.673, pp.108 - 113
  • Elsevier
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  • Moon, Joonoh
  • Park, Seong-Jun
  • Lee, Chang-Hoon
  • Hong, Hyun-Uk
  • Lee, Bong Ho
  • Kim, Sung-Dae
  • 2023-03
  • Moon, Joonoh. (2023-03). Influence of microstructure evolution on hot ductility behavior of austenitic Fe–Mn–Al–C lightweight steels during hot tensile deformation. Materials Science and Engineering: A, 868. doi: 10.1016/j.msea.2023.144786
  • Elsevier BV
  • View : 314
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  • Moon, Joonoh
  • Park, Seong-Jun
  • Jang, Jae Hoon
  • Lee, Tae-Ho
  • Lee, Chang-Hoon
  • Hong, Hyun-Uk
  • Han, Heung Nam
  • Lee, Jaeeun
  • Lee, Bong Ho
  • Lee, Changhee
  • 2018-04
  • Moon, Joonoh. (2018-04). Investigations of the microstructure evolution and tensile deformation behavior of austenitic Fe-Mn-Al-C lightweight steels and the effect of Mo addition. doi: 10.1016/j.actamat.2018.01.051
  • Elsevier BV
  • View : 712
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Mechanisms for improving tensile properties at elevated temperature in fire-resistant steel with Mo and Nb

  • Jo, Hyo-Haeng
  • Shin, Chansun
  • Moon, Joonoh
  • Jang, Jae Hoon
  • Ha, Heon-Young
  • Park, Seong-Jun
  • Lee, Tae-Ho
  • Lee, Bong Ho
  • Chung, Jun-Ho
  • Speer, John G.
  • et al
  • 2020-09
  • Jo, Hyo-Haeng. (2020-09). Mechanisms for improving tensile properties at elevated temperature in fire-resistant steel with Mo and Nb. Materials and Design, 194, 108882. doi: 10.1016/j.matdes.2020.108882
  • Elsevier Ltd
  • View : 611
  • Download : 86
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