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Development of Ti-Zr-Mn-Cr-V based alloys for high-density hydrogen storage

机译:用于高密度储氢的Ti-Zr-Mn-Cr-V基合金的研制

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Two series of Ti1-xZrxMn1.1Cr0.7V0.2 (x = 0.05, 0.06, 0.07, 0.1) and Ti0.95Zr0.05Mn1.8-yCryV0.2 (y = 0.5, 0.7, 0.9) alloys were developed for high-density hydrogen storage units. The effect of partial substitution of Zr for Ti and Cr for Mn on microstructures as well as hydrogen storage performances was systematically investigated. All prepared alloys are determined as a single phase of C14-type Laves structure and uniform element distribution. As Ti is increasingly substituted with Zr in the Ti1-xZrxMn1.1Cr0.7V0.2 (x = 0.05-0.1) alloys, the hydrogen storage capacity increases gradually, while the plateau pressures decrease drastically. For Ti0.95Zr0.05Mn1.8-yCryV0.2 (y = 0.5-0.9) alloys, with the increase substitution of Cr for Mn, equilibrium pressure hysteresis of de-hydrogenation improves significantly, while the plateau pressures and the hydrogen storage capacity decrease slightly. Among the studied alloys, Ti0.95Zr0.05Mn0.9Cr0.9V0.2 is the most suitable for high-density hydrogen storage units with excellent cycling performances. The hydrogen storage capacity is 1.78 wt% in gravimetry and 118.33 kg/m(3) in volumetry. The desorption plateau pressure at 90 degrees c is 9.37 MPa with extremely low hysteresis, and dissociation enthalpy is - 21.64 kJ mol(-1). This work provides a guideline for the alloy composition design of Ti-based alloys. (C) 2021 Elsevier B.V. All rights reserved.
机译:Ti1-xZrxMn1的两个系列。1Cr0。7V0。2(x=0.05,0.06,0.07,0.1)和Ti0。95Zr0。05Mn1。8-yCryV0。2(y=0.5,0.7,0.9)合金用于高密度储氢装置。系统地研究了Zr部分取代Ti和Cr部分取代Mn对储氢材料微观结构和储氢性能的影响。所有制备的合金均为C14型Laves结构的单相,元素分布均匀。在Ti1-xZrxMn1中,Ti越来越多地被Zr取代。1Cr0。7V0。2(x=0.05-0.1)合金,储氢容量逐渐增加,而平台压力急剧降低。给Ti0。95Zr0。05Mn1。8-yCryV0。2(y=0.5-0.9)合金,随着Cr替代Mn量的增加,脱氢平衡压力滞后显著改善,而平台压力和储氢能力略有下降。在所研究的合金中,Ti0。95Zr0。05Mn0。9Cr0。9V0。2最适用于循环性能优异的高密度储氢装置。重量法测得的储氢容量为1.78 wt%,体积法测得的储氢容量为118.33 kg/m(3)。90℃时的脱附平台压力为9.37mpa,滞后极低,解离焓为-21.64kj mol(-1)。这项工作为钛基合金的成分设计提供了指导。(c)2021爱思唯尔B.V.保留所有权利。

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