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Enhancement of hydrogen storage capacity of Ti-V-Cr-Mn BCC phase alloys

机译:Ti-V-Cr-Mn BCC相合金储氢能力的提高

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摘要

The phase structures and hydrogen absorption-desorption properties of Ti-V-Cr-Mn alloys were investigated. It is found that the increasing V content is effective for enhancing the hydrogen absorption capacity and flattening the hydrogen desorption plateau, while it depresses the hydrogen desorption plateau pressure. With the increase of V content, two phases of BCC and C14 Laves of the alloys transform into a single BCC phase. The maximum and effective hydrogen storage capacities among studied alloys are 3.98 and 2.51 wt. percent, respectively, which open the hope to bring Ti-V-based alloy into the reach of practical application for onboard hydrogen storage systems in fuel cell powered vehicles.
机译:研究了Ti-V-Cr-Mn合金的相结构和氢吸收-脱附性能。发现增加的V含量对于提高氢吸收能力和平坦化氢解吸平稳有效,同时降低了氢解吸平稳的压力。随着V含量的增加,合金的BCC和C14 Laves的两个相转变为一个BCC相。在研究的合金中,最大和有效的储氢能力为3.98和2.51 wt。%。百分比,这打开了将Ti-V基合金带入实际应用范围的希望,以用于燃料电池动力车辆的车载储氢系统。

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