Browse > Article
http://dx.doi.org/10.4150/KPMI.2019.26.2.156

Research Trends of the Mo-Si-B Alloys as Next Generation Ultra-high-temperature Alloys  

Choi, Won June (Department of Materials Science and Engineering, Hanyang University)
Park, Chun Woong (Department of Materials Science and Engineering, Hanyang University)
Park, Jung Hyo (Agency for Defense Development)
Kim, Young Do (Department of Materials Science and Engineering, Hanyang University)
Byun, Jong Min (Department of Materials Science and Engineering, Seoul National University of Science and Technology)
Publication Information
Journal of Powder Materials / v.26, no.2, 2019 , pp. 156-165 More about this Journal
Abstract
Over the last decade, the next generation's ultra-high-temperature materials as an alternative to Nickel-based superalloys have been highlighted. Ultra-high-temperature materials based on refractory metals are one of several potential candidates. In particular, molybdenum alloys with small amounts of silicon and boron (Mo-Si-B alloys) have superior properties at high temperature. However, research related to Mo-Si-B alloys were mainly conducted by several developed countries but garnered little interest in Korea. Therefore, in this review paper, we introduce the development history of Mo-Si-B alloys briefly and discuss the properties, particularly the mechanical and oxidation properties of Mo-Si-B alloys. We also introduce the latest research trends of Mo-Si-B alloys based on the research paper. Finally, for domestic research related to this field, we explain why Mo-Si-B alloys should be developed and suggest the potential directions for Mo-Si-B alloys research.
Keywords
Next generation ultra-high-temperature alloys; Mo-Si-B alloys; Mechanical property; Oxidation resistance;
Citations & Related Records
연도 인용수 순위
  • Reference
1 H. Nowotny, E. Dimakopoulou and H. Kudielka: Monatshefte fur Chemie, 88 (1957) 180.   DOI
2 P. Jain and K. S. Kumar: Acta Mater., 58 (2010) 2124.   DOI
3 P. Jain and K. S. Kumar: Scr. Mater., 62 (2010) 1.   DOI
4 D. Sturm, M. Heilmaier, J. H. Schneibel, P. Jehanno, B. Skrotzki and H. Saage: Mater. Sci. Eng., A, 463 (2007) 107.   DOI
5 M. K. Miller, E. A. Kenik, M. S. Mousa, K. F. Russell and A. J. Bryhan: Scr. Mater., 46 (2002) 299.   DOI
6 M. K. Miller and A. J. Bryhan: Mater. Sci. Eng., A, 327 (2002) 80.   DOI
7 I. Rosales: J. Cryst. Growth, 310 (2008) 3833.   DOI
8 J. G. Swadener, I. Rosales and J. H. Schneibel: Mater. Res. Soc. Symp. Proc., 646 (2001) N421.
9 C. J. Rawn, J. H. Schneibel, C. M. Hoffman and C. R. Hubbard: Intermetallics, 9 (2001) 209.   DOI
10 R. Sakidja, J. H. Perepezko, S. Kim and N. Sekido: Acta Mater., 56 (2008) 5223.   DOI
11 K. Ito, K. Ihara, K. Tanaka, M. Fujikura and M. Yamaguchi: Intermetallics, 9 (2001) 591.   DOI
12 M. Akinc, M. K. Meyer, M. J. Kramer, A. J. Thom, J. J. Huebsch, and B. Cook: Mater. Sci. Eng., A, 261 (1999) 16.   DOI
13 D.M. Berczik: US, US5595616A (1997).
14 D.M. Berczik: EP, EP0804627B1 (1995).
15 A. Wiltner, B. Kloden, I. Hilger, T. Weissgarber and B. Kieback: J. Am. Ceram. Soc., 98 (2015) 3569.   DOI
16 P. G. Biragoni and M. Heilmaier: Adv. Eng. Mater., 9 (2007) 882.   DOI
17 T. G. Nieh, J. G. Wang and C. T. Liu: Intermetallics, 9 (2001) 73.   DOI
18 I. Rosales and J. H. Schneibel: Intermetallics, 8 (2000) 885.   DOI
19 P. Jehanno, M. Heilmaier, H. Kestler, M. Boning, A. Venskutonis, B. Belway and M. Jackson: Metall. Mater. Trans. A, 36 (2005) 515.   DOI
20 M. Kruger, S. Franz, H. Saage, M. Heilmaier, J. H. Schneibel, P. Jehanno, M. Boning and H. Kestler: Intermetallics, 16 (2008) 933.   DOI
21 J. J. Kruzic, J. H. Schneibel and R. O. Ritchie: Metall. Mater. Trans. A, 36 (2005) 2393.   DOI
22 T. A. Parthasarathy, M. G. Mendiratta and D. M. Dimiduk: Acta Mater., 50 (2002) 1857.   DOI
23 D. M. Dimiduk and J. H. Perepezko: MRS Bull., 28 (2003) 639.   DOI
24 F. A. Rioult, S. D. Imhoff, R. Sakidja and J. H. Perepezko: Acta Mater., 57 (2009) 4600.   DOI
25 P. Jehanno, M. Heilmaier, H. Saage, M. Boning, H. Kestler, J. Freudenberger and S. Drawin: Mater. Sci. Eng., A, 463 (2007) 216.   DOI
26 F. Wang, A. Shan, X. Dong and J. Wu: Scr. Mater., 56 (2007) 737.   DOI
27 V. Supatarawanich, D. R. Johnson and C. T. Liu: Mater. Sci. Eng., A, 344 (2003) 328.   DOI
28 V. Supatarawanich, D. R. Johnson and C. T. Liu: Intermetallics, 12 (2004) 721.   DOI
29 P. Jehanno, M. Heilmaier, H. Saage, H. Heyse, M. Boning, H. Kestler and J. H. Schneibel: Scr. Mater., 55 (2006) 525.   DOI
30 M. Kruger, D. Schliephake, P. Jain, K. S. Kumar, G. Schumacher and M. Heilmaier: JOM, 65 (2013) 301.   DOI
31 C. Hochmuth, D. Schliephake, R. Volkl, M. Heilmaier and U. Glatzel: Intermetallics, 48 (2014) 3.   DOI
32 D. Schliephake, M. Azim, K. Von Klinski-Wetzel, B. Gorr, H. J. Christ, H. Bei, E. P. George and M. Heilmaier: Metall. Mater. Trans. A, 45 (2014) 1102.   DOI
33 M. Heilmaier, M. Kruger and H. Saage: Mater. Sci. Forum, 633-634 (2010) 549.
34 P. Jehanno, M. Boning, H. Kestler, M. Heilmaier, H. Saage and M. Kruger: Powder Metall., 51 (2008) 99.   DOI
35 D. M. Scruggs: US US3320036 (1967).
36 J. H. Schneibel, M. P. Brady, J. J. Kruzic and R. O. Ritchie: Z. Metallkunde, 96 (2005) 632.   DOI
37 I. M. Gunter, J. H. Schneibel and J. J. Kruzic: Mater. Sci. Eng., A, 458 (2007) 275.   DOI
38 Z. Guo-jun, D. Qian, K. Hao, W. Rui-hong, L. Gang and S. Jun: J. Alloys Compd., 577S (2013) S493.
39 S. Paswan, R. Mitra and S. K. Roy: Intermetallics, 15 (2007) 1217.   DOI
40 S. Paswan, R. Mitra and S. K. Roy: Mater. Sci. Eng., A, 424 (2006) 251.   DOI
41 S. Paswan, R. Mitra and S. K. Roy: Metall. Mater. Trans. A, 40 (2009) 2644.   DOI
42 S. R. Woodward, R. Raban, J. F. Myers and D. M. Berzcik: US US6652674 (2003).
43 S. Burk, B. Gorr, V. B. Trindade, H. J. Christ: Oxid. Met., 73 (2010) 163.   DOI
44 Y. Yang, H. Bei, S. Chen, E. P. George, J. Tiley and Y. A. Chang: Acta Mater., 58 (2010) 541.   DOI
45 H. Saage, M. Kruger, D. Sturm, M. Heilmaier, J. H. Schneibel, E. George, L. Heatherly, Ch. Somsen, G. Eggeler and Y. Yang: Acta Mater., 57 (2009) 3895.   DOI
46 S. Majumdar, A. Kumar, D. Schliephake, H. J. Christ, X. Jiang and M. Heilmaier: Mater. Sci. Eng., A, 573 (2013) 257.   DOI
47 S. Majumdar, S. Burk, D. Schliephake, M. Kruger, H. J. Christ and M. Heilmaier: Oxid. Met., 80 (2013) 219.   DOI
48 W. Li, G. Zhang, S. Wang, B. Li and J. Sun: J. Alloys Compd., 642 (2015) 34.   DOI
49 Z. Guo-jun, K. Hao, D. Qian, L. Gang and S. Jun: Int. J. Refract. Met. Hard Mater., 30 (2012) 6.   DOI
50 S. Majumdar, B. Gorr, H. J. Christ, D. Schliephake and M. Heilmaier: Corros. Sci., 88 (2014) 360.   DOI
51 S. Majumdar, D. Schliephake, B. Gorr, H. J. Christ and M. Heilmaier: Metall. Mater. Trans. A, 44 (2013) 2243.   DOI
52 S. Miyamoto, K. Yoshimi, S. H. Ha, T. Kaneko, J. Nakamura, T. Sato, K. Maruyama, R. Tu and T. Goto: Metall. Mater. Trans. A, 45 (2014) 1112.   DOI
53 Y. H. Song, J. S. Park, J. M. Kim and S. H. Yi: Mater. Sci. Forum, 695 (2011) 365.   DOI
54 K. Yoshimi, J. Nakamura, D. Kanekon, S. Yamamoto, K Maruyama, H. Katsui and T. Goto: JOM, 66 (2014) 1930.   DOI
55 J. Nakamura, D. Kanekon and K. Yoshimi: Mater. Lett., 180 (2016) 340.   DOI
56 M. A. Azim, S. Burk, B. Gorr, H. J. Christ, D. Schliephake, M. Heilmaier, R. Bornemann and P. H. Bolivar: Oxid. Met., 80 (2013) 231.   DOI
57 R. Mitra, A. K. Srivastava, N. E. Prasad and S. Kumari: Intermetallics, 14 (2006) 1461.   DOI
58 R. Sakidja, F. Rioult, J. Werner and J. H. Perepezko: Scr. Mater., 55 (2006) 903.   DOI
59 K. Ito, M. Kumagai, T. Hayashi and M. Yamaguchi: Scr. Mater., 49 (2003) 285.   DOI
60 A. P. Alur, R. Sakidja, P. Wang, P. Jain, J. H. Perepezko and K.S. Kumar: Mater. Res. Soc. Symp. Proc., 1295 (2011) 355.
61 L. Su, O. Lu-Steffes, H. Zhang and J. H. Perepezko: Appl. Surf. Sci., 337 (2015) 38.   DOI
62 J. Das, R. Mitra and S. K. Roy: Intermetallics, 19 (2011) 1.   DOI
63 J. Das, R. Mitra and S. K. Roy: Scr. Mater., 64 (2011) 486.   DOI
64 J. Nakamura, T. Kaneko, T. Hara, K. Yoshimi, K. Maruyama, H. Katsui and T. Goto: Intermetallics, 53 (2014) 85.   DOI
65 T. Sossaman, R. Sakidja, J. H. Perepezko: Scr. Mater., 67 (2012) 891.   DOI
66 Z. K. Li, J. L. Yu, X. Zheng, J. J. Zhang, H. Liu, R. Bai, H. Wang, D. H. Wang and W. S. Wang: Powder Technol., 214 (2011) 54.   DOI