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Mn含量對(V60Ti22.4Cr5.6Fe12)100-xMnx(0≤x≤3)合金吸放氫性能的影響
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國家“863”項(xiàng)目 (2007AA05Z114);四川省科技支撐計(jì)劃 (07GG002-002);攀枝花市重點(diǎn)科技項(xiàng)目 (2007CY-G-10)


Effect of Mn Content on Hydrogen Absorption and Desorption Properties of (V60Ti22.4Cr5.6Fe12)100-xMnx(0≤x≤3)Alloys
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    摘要:

    系統(tǒng)研究了采用FeV80中間合金制備的低成本(V60Ti22.4Cr5.6Fe12)100-xMnx(0≤x≤3)合金的吸放氫性能及微觀組織結(jié)構(gòu)。XRD及PCT測試結(jié)果表明,隨著Mn含量的增加,合金的晶格常數(shù)減小,放氫平臺(tái)壓先升高后降低; 吸氫量隨Mn含量的增加不斷降低,而Mn含量的增加對放氫量沒有顯著影響。當(dāng)Mn含量為2.5 at%時(shí),合金室溫下的放氫平臺(tái)壓達(dá)到最大值0.14 MPa,吸氫量為3.64%(質(zhì)量分?jǐn)?shù), 下同),放氫量為2.00%。SEM及EDS分析表明,不同Mn含量的合金均由bcc主相、富鈦二相及稀土氧化物相組成,且Mn主要存在于合金的bcc主相中,而在富鈦二相中分布相對較少

    Abstract:

    Microstructures and hydrogen absorption and desorption properties of (V60Ti22.4Cr5.6Fe12)100-xMnx (0≤x≤3) alloys made from FeV80 master alloy were investigated systematically. XRD and PCT testing results show that lattice parameter decreases, and plateau pressure increases first and then decreases with the increasing of Mn content. Meanwhile, as the Mn content increases , the hydrogen absorption capacity decreases, but the desorption capacity varies a little .When the Mn content reaches 2.5at%, the plateau pressure of hydrogen desorption reaches a maximum of 0.14 MPa at room temperature, while the hydrogen absorption capacity is 3.64wt% and the hydrogen desorption capacity is 2.00wt%. SEM and EDS analysis show that all of the alloys consist of bcc main phase, Ti-rich phase and rare earth oxide phase. Mn is mainly distributed in the bcc main phase, and only a small amount of Mn exists in the Ti-rich secondary phase.

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羅林山,吳朝玲,陳云貴,楊 菲. Mn含量對(V60Ti22.4Cr5.6Fe12)100-xMnx(0≤x≤3)合金吸放氫性能的影響[J].稀有金屬材料與工程,2014,43(1):162~165.[Luo Linshan, Wu Chaoling, Chen Yungui, Yang Fei. Effect of Mn Content on Hydrogen Absorption and Desorption Properties of (V60Ti22.4Cr5.6Fe12)100-xMnx(0≤x≤3)Alloys[J]. Rare Metal Materials and Engineering,2014,43(1):162~165.]
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  • 收稿日期:2013-01-17
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  • 在線發(fā)布日期: 2014-04-16
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