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Hydrogenation of a TiFe-based alloy at high pressures and temperatures

机译:TiFe基合金在高压和高温下的氢化

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We investigated the hydrogenation of a ternary TiFe0.8Mn0.2 alloy under high pressure (up to 6.5 GPa) and at high temperature (up to 600 degrees C) by in situ synchrotron radiation X-ray diffraction measurements. A chemical order-disorder phase transition and the formation of body-centered cubic (BCC) hydride were observed. The phase-transition temperature was 400 degrees C, which is 200 degrees C lower than that of a binary TiFe alloy. A disproportionation reaction, which was observed for the binary TiFe alloy, did not occur at this temperature. The BCC hydride existed stably, and new hydrides were not formed after the BCC hydride became a single phase. Since the unit cell volume of the BCC hydride was almost equal to that of the gamma hydride, TiFe0.8Mn0.2H18, under the same pressure-temperature conditions, the hydrogen content of the former was roughly estimated as the same as that of the latter (hydrogen to metal atom ratio = 0.9). Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:我们通过原位同步辐射X射线衍射测量研究了三元TiFe0.8Mn0.2合金在高压(最高6.5 GPa)和高温(最高600摄氏度)下的氢化。观察到化学有序无序相变和体心立方(BCC)氢化物的形成。相变温度为400℃,比二元TiFe合金的相变温度低200℃。在该温度下未发生二元TiFe合金的歧化反应。 BCC氢化物稳定存在,且BCC氢化物变为单相后不形成新的氢化物。由于在相同的压力-温度条件下,BCC氢化物的晶胞体积几乎等于γ氢化物TiFe0.8Mn0.2H18的晶胞体积,因此粗略估计前者的氢含量与后者相同(氢与金属原子之比= 0.9)。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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