Acta Metallurgica Sinica (English Letters) ›› 2015, Vol. 28 ›› Issue (6): 733-738.DOI: 10.1007/s40195-015-0254-4
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Pelin Öztürk1, Aytekin Hitit1(
)
Received:2014-08-15
Revised:2014-11-13
Online:2015-03-21
Published:2015-07-23
Pelin Öztürk, Aytekin Hitit. Effects of Tungsten and Boron Contents on Crystallization Temperature and Microhardness of Tungsten Based Metallic Glasses[J]. Acta Metallurgica Sinica (English Letters), 2015, 28(6): 733-738.
| Series | Alloy | T g (K) | T x1 (K) | T x2 (K) | T m (K) | T L (K) | Hardness (HV) |
|---|---|---|---|---|---|---|---|
| 1 | W25Fe45B30 | 1017 | 1060 | 1148 | 1416 | - | 1340 |
| W27.5Fe40B32.5 | 1063 | 1110 | 1190 | 1409 | - | 1545 | |
| 2 | W27.5Fe45B27.5 | 1043 | 1090 | 1201 | 1603 | - | 1356 |
| W30 Fe40B30 | 1106 | 1140 | 1251 | 1602 | - | 1608 | |
| 3 | W30Fe45B25 | 1036 | 1086 | 1204 | 1607 | - | 1485 |
| W32.5Fe40B27.5 | 1095 | 1143 | 1268 | 1602 | - | 1544 | |
| W35Fe35B30 | 1130 | 1177 | 1331 | 1679 | - | 1634 |
Table 1 Thermal properties (T g,T x,T m) and Vickers hardness values of W-Fe-B alloys
| Series | Alloy | T g (K) | T x1 (K) | T x2 (K) | T m (K) | T L (K) | Hardness (HV) |
|---|---|---|---|---|---|---|---|
| 1 | W25Fe45B30 | 1017 | 1060 | 1148 | 1416 | - | 1340 |
| W27.5Fe40B32.5 | 1063 | 1110 | 1190 | 1409 | - | 1545 | |
| 2 | W27.5Fe45B27.5 | 1043 | 1090 | 1201 | 1603 | - | 1356 |
| W30 Fe40B30 | 1106 | 1140 | 1251 | 1602 | - | 1608 | |
| 3 | W30Fe45B25 | 1036 | 1086 | 1204 | 1607 | - | 1485 |
| W32.5Fe40B27.5 | 1095 | 1143 | 1268 | 1602 | - | 1544 | |
| W35Fe35B30 | 1130 | 1177 | 1331 | 1679 | - | 1634 |
| Alloy | T x1 (K) | T x2 (K) | Ref. |
|---|---|---|---|
| (Ta,W)80Si10B10 | 1310-1456 | - | [ |
| (Hf,Ta)80Si10B10 | 940-1220 | - | [ |
| (Ta,Nb,V)80Si10B10 | 930-1210 | - | [ |
| Ta55Ir45 | 1340 | - | [ |
| Ta55Ni45 | 990 | - | [ |
| (Nb,Mo)80Si10B10 | 1020-1120 | - | [ |
| (Nb,Ta)55(Rh,Ir)45 | 951-1338 | -- | [ |
| Nb70W10Si20 | 1027 | - | [ |
| Nb70Mo10Si20 | 1008 | - | [ |
| (Mo,Cr,Fe)80(P,B,C,Si)20 | 1104-1186 | - | [ |
| Mo48TM32P12B8 | 1078-1151 | - | [ |
| (Mo0.6Ru0.4)78-86B22-14 | 1020-1090 | - | [ |
| Re49.7B18.4Zr7.5Si17.4Nb7.0 | 1331 | 1347 | [ |
| Re46.4B33.4Hf4Si16.2 | 1128 | 1139 | [ |
| W70Si20B10 | 1033 | - | [ |
| W45Re23Ru15B17 | 1273 | - | [ |
| W56Ir23B21 | 1271 | 1305 | [ |
| W46Ru37B17 | 1174 | 1208 | [ |
| W46Ru37B12Si5 | 1172 | 1202 | [ |
| W46Ru37B15Si2 | 1167 | 1201 | [ |
| W38Ir17Ru31B14 | 1119 | 1232 | [ |
| W54Rh26B20 | 1064 | 1152 | [ |
| W37Ru31Rh18B14 | 1049 | - | [ |
| W30Fe38B25C7 | 1067 | 1128 | [ |
| W33Ni32B 35 a | 1146 | - | [ |
Table 2 Crystallization temperatures of several melt-spun refractory metal-based metallic glasses
| Alloy | T x1 (K) | T x2 (K) | Ref. |
|---|---|---|---|
| (Ta,W)80Si10B10 | 1310-1456 | - | [ |
| (Hf,Ta)80Si10B10 | 940-1220 | - | [ |
| (Ta,Nb,V)80Si10B10 | 930-1210 | - | [ |
| Ta55Ir45 | 1340 | - | [ |
| Ta55Ni45 | 990 | - | [ |
| (Nb,Mo)80Si10B10 | 1020-1120 | - | [ |
| (Nb,Ta)55(Rh,Ir)45 | 951-1338 | -- | [ |
| Nb70W10Si20 | 1027 | - | [ |
| Nb70Mo10Si20 | 1008 | - | [ |
| (Mo,Cr,Fe)80(P,B,C,Si)20 | 1104-1186 | - | [ |
| Mo48TM32P12B8 | 1078-1151 | - | [ |
| (Mo0.6Ru0.4)78-86B22-14 | 1020-1090 | - | [ |
| Re49.7B18.4Zr7.5Si17.4Nb7.0 | 1331 | 1347 | [ |
| Re46.4B33.4Hf4Si16.2 | 1128 | 1139 | [ |
| W70Si20B10 | 1033 | - | [ |
| W45Re23Ru15B17 | 1273 | - | [ |
| W56Ir23B21 | 1271 | 1305 | [ |
| W46Ru37B17 | 1174 | 1208 | [ |
| W46Ru37B12Si5 | 1172 | 1202 | [ |
| W46Ru37B15Si2 | 1167 | 1201 | [ |
| W38Ir17Ru31B14 | 1119 | 1232 | [ |
| W54Rh26B20 | 1064 | 1152 | [ |
| W37Ru31Rh18B14 | 1049 | - | [ |
| W30Fe38B25C7 | 1067 | 1128 | [ |
| W33Ni32B 35 a | 1146 | - | [ |
| Alloy | Hardness (HV) | Ref. |
|---|---|---|
| W33Ni32B 35 a | 2447 | [ |
| (W0.6Re0.4)0.76B 24 a | 2400 | [ |
| Mo-Fe-B | 1784-1988 | [ |
| Mo-Co-B | 1682-1733 | [ |
| Mo-Co-Fe-B | 1784-1815 | [ |
| Re49.7B18.4Zr7.5Si17.4Nb7.0 | 1784 | [ |
| Re46.4B33.4Hf4Si16.2 | 1377 | [ |
| Mo70Si20B10 | 1020 | [ |
| W70Si20B10 | 1326 | [ |
| W45Re23Ru15B17 | 1764 | [ |
| W46Ru37B17 | 1713 | [ |
| W45Ru36B17Hf2 | 1682 | [ |
| W46Ru37B15Si2 | 1468 | [ |
| W46Ru37B12Si5 | 1346 | [ |
| W30Fe38B25C7 | 1219 | [ |
Table 3 Vickers hardness values of several melt-spun refractory metal-based metallic glasses
| Alloy | Hardness (HV) | Ref. |
|---|---|---|
| W33Ni32B 35 a | 2447 | [ |
| (W0.6Re0.4)0.76B 24 a | 2400 | [ |
| Mo-Fe-B | 1784-1988 | [ |
| Mo-Co-B | 1682-1733 | [ |
| Mo-Co-Fe-B | 1784-1815 | [ |
| Re49.7B18.4Zr7.5Si17.4Nb7.0 | 1784 | [ |
| Re46.4B33.4Hf4Si16.2 | 1377 | [ |
| Mo70Si20B10 | 1020 | [ |
| W70Si20B10 | 1326 | [ |
| W45Re23Ru15B17 | 1764 | [ |
| W46Ru37B17 | 1713 | [ |
| W45Ru36B17Hf2 | 1682 | [ |
| W46Ru37B15Si2 | 1468 | [ |
| W46Ru37B12Si5 | 1346 | [ |
| W30Fe38B25C7 | 1219 | [ |
| [1] | A. Inoue, A. Takeuchi,Acta Mater. 59, 2243(2011) |
| [2] | T. Yoshitake, Y. Kubo, H. Igarashi,Mater. Sci. Eng. 97, 269(1988) |
| [3] | L. Rohr, P. Reimann, T. Richmond, H.J. Güntherodt, Mater. Sci. Eng. A 133, 715 (1991) |
| [4] | C.C. Koch, D.M. Kroeger, J.O. Scarbrough, B.C. Giessen, Phys. Rev. B 22, 5213 (1980) |
| [5] | T. Masumoto, A. Inoue, S. Sakai, H. Kimura, A. Hoshi, Trans. JIM 21, 115 (1980) |
| [6] | M.K. Mahan, B.L. Jha, J. Mater. Sci. Lett. 15, 1594(1980) |
| [7] | M. Mehra, R. Schultz, W.L. Johnson, J. Non-Cryst. Solids 61-62, 859(1984) |
| [8] | R. Yoshimoto, Y. Nogi, R. Tamura, S. Takeuchi,Mater. Sci. Eng., A 449-451, 260(2007) |
| [9] | A. Inoue, S. Sakai, H. Kimura, K. Masumoto, A. Hoshi,Scr. Mater. 14, 235(1980) |
| [10] | M. Ohtsuki, K. Nagata, R. Tamura, S. Takeuchi, Mater. Trans., JIM 46, 48 (2005) |
| [11] | Z.Y. Suo, Y.L. Song, B. Yu, K.Q. Qiu, Mater. Sci. Eng. A 528, 2912 (2011) |
| [12] | S.V. Madge, A. Caron, R. Gralla, G. Wilde, S.K. Mishra, Intermetallics 47, 6 (2014) |
| [13] | A.P. Thakoor, J.L. Lamb, S.K. Khanna, M. Mehra, W.L. Johnson, J. Appl. Phys. 58, 3409(1985) |
| [14] | V.V. Brazhkin, A.G. Lyapin, R.J. Hemley, Philos. Mag. A 82, 231 (2002) |
| [15] | C.J. Qi, Y.H. Jiang, Y.Z. Liu, R. Zhou,Ceram. Int. 40, 5843(2014) |
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