Park Ju-Wan, Kim Yeon-Wook, Nam Tae-Hyun
School of Materials Science and Engineering and RIGET, Gyeongsang National University, 900 Gazwadong, Jinju, Gyeongnam 660-701, Korea.
Department of Advanced Materials Science and Engineering, Keimyung University, 1000 Shindang-dong, Dalseo-gu, Taegu 704-701, Korea.
J Nanosci Nanotechnol. 2018 Sep 1;18(9):6326-6332. doi: 10.1166/jnn.2018.15647.
Ti-(50-x)Ni-xSi (at%) (x = 0.5, 1.0, 3.0, 5.0) alloy ribbons were prepared via melt spinning and their crystallization procedure and transformation behavior were investigated using differential scanning calorimtry, X-ray diffraction, and transmission electron microscopy. Ti-Ni-Si alloy ribbons with Si content less than 1.0 at% were crystalline, whereas those with Si content more than 3.0 at% were amorphous. Crystallization occurred in the sequence of amorphous →B2 → B2 → Ti5Si4 + TiNi3 → B2 + Ti5Si4 + TiNi3 + TiSi in the Ti-47.0Ni-3.0Si alloy and amorphous →R → R + Ti5Si4 + TiNi3 → R + Ti5Si4 + TiNi3 + TiSi in the Ti-45.0Ni-5.0Si alloy. The activation energy for crystallization was 189 ±8.6 kJ/mol for the Ti-47Ni-3Si alloy and 212±8.6 kJ/mol for the Ti-45Ni-5Si alloy. One-stage B2-R transformation behavior was observed in Ti-49.5Ni-0.5Si, Ti-49.0Ni-1.0Si, and Ti-47.0Ni- 3.0Si alloy ribbons after heating to various temperatures in the range of 873 K to 1073 K. In the Ti-45.0Ni-5.0Si alloy, one-stage B2-R transformation occurred after heating to 893 K, two-stage B2-R-B19' occurred after heating to 973 K, and two-stage B2-R-B19' occurred on cooling and one-stage B19'-B2 occurred on heating, after heating to 1073 K.
通过熔体纺丝制备了Ti-(50-x)Ni-xSi(原子百分比,x = 0.5、1.0、3.0、5.0)合金薄带,并使用差示扫描量热法、X射线衍射和透射电子显微镜研究了它们的结晶过程和转变行为。硅含量小于1.0原子百分比的Ti-Ni-Si合金薄带是结晶态的,而硅含量大于3.0原子百分比的则是非晶态的。在Ti-47.0Ni-3.0Si合金中,结晶过程按非晶态→B2→B2→Ti5Si4 + TiNi3→B2 + Ti5Si4 + TiNi3 + TiSi的顺序发生;在Ti-45.0Ni-5.0Si合金中,结晶过程按非晶态→R→R + Ti5Si4 + TiNi3→R + Ti5Si4 + TiNi3 + TiSi的顺序发生。Ti-47Ni-3Si合金的结晶活化能为189±8.6 kJ/mol,Ti-45Ni-5Si合金的结晶活化能为212±8.6 kJ/mol。在873 K至1073 K范围内将Ti-49.5Ni-0.5Si、Ti-49.0Ni-1.0Si和Ti-47.0Ni-3.0Si合金薄带加热到不同温度后,观察到了一级B2-R转变行为。在Ti-45.0Ni-5.0Si合金中,加热到893 K后发生一级B2-R转变,加热到973 K后发生二级B2-R-B19'转变,加热到1073 K后冷却时发生二级B2-R-B19'转变,加热时发生一级B19'-B2转变。