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The thermodynamic properties of Ti-Zr-Cr-Mn Laves phase alloys

机译:Ti-Zr-Cr-Mn Laves相合金的热力学性质

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摘要

Several TiMn_2-based C14 Laves phase alloys were prepared and their hydrogen storage properties were studied in order to develop a suitable material for metal hydride heat pump applications. The metal hydride should have a suitable plateau pressure of under 10 atm and low sloping. The plateau pressure was effectively decreased by the partial substitutions of Zr for Ti, white the slope was increased. It was found that the decrease of stoichiometry and the substitution of V, Cu were very effective in improving the sloping properties, and the improvement of sloping properties was mainly attributed to the strain energy effect. After a careful balancing of the substitution effects of the alloying elements, it was found that (Ti_(0.8)Zr_(0.2))_(1.05)Mn_(0.8)Cr_(1.05)V_(0.05)Cu_(0.1) alloy showed good plateau characteristics with very small hysteresis and sloping.
机译:制备了几种基于TiMn_2的C14 Laves相合金,并研究了其储氢性能,以开发适用于金属氢化物热泵应用的材料。金属氢化物应具有低于10个大气压的适当平稳压力和低倾斜度。用Zr代替Ti可以有效地降低高原压力,白色可以增加斜率。发现化学计量的降低和V,Cu的取代对于改善倾斜性能非常有效,并且倾斜性能的改善主要归因于应变能效应。在仔细权衡合金元素的替代作用后,发现(Ti_(0.8)Zr_(0.2))_(1.05)Mn_(0.8)Cr_(1.05)V_(0.05)Cu_(0.1)合金表现出良好的高原特性,具有很小的磁滞和倾斜。

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