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放電等離子燒結制備Mg2-xNdxNi(x=0~0.3)儲氫合金

Preparation of Mg2-xNdxNi(x=0~0.3) hydrogen storage alloys by spark plasma sintering

  • 摘要: 采用放電等離子燒結(SPS)工藝制備了Mg2-xNdxNi(x=0,0.1,0.2,0.3)儲氫合金.通過X射線衍射(XRD)和掃描電鏡(SEM)研究了合金的相結構和表面形貌,利用等容壓差法分析測試了合金的壓力-組成-溫度(PCT)曲線和吸放氫動力學性能,研究了燒結溫度、稀土元素Nd對儲氫合金微觀組織結構和儲氫性能的影響,比較了SPS技術與真空感應熔煉法制備的Mg基合金組織結構和儲氫性能的異同.結果表明:SPS制備的Mg2-xNdxNi(x=0~0.3)系列儲氫合金具有多相結構,儲氫合金的吸放氫動力學性能良好;Nd元素有利于Mg合金化,不利于儲氫量;燒結溫度對儲氫量、PCT曲線平臺性能有明顯影響;當Mg2-xNdxNi系合金中含有Mg和NdMg12相,PCT曲線出現雙平臺現象;與鑄態合金相比,SPS制備的Mg1.7Nd0.3Ni儲氫合金的吸放氫動力學性能較好,但儲氫容量、放氫率和PCT曲線平臺性能更差.

     

    Abstract: The effects of sintering temperature and rare element Nd on the phase structures,morphology,pressure-composition-temperature(PCT) curves and hydrogen absorption/desorption kinetics characteristics of Mg2-xNdxNi(x=0,0.1,0.2,0.3)alloys prepared by spark plasma sintering(SPS) were investigated by X-ray diffraction(XRD),scanning electron microscopy(SEM) and PCT experiments.The structures and hydrogen storage properties of the Mg-based alloys prepared by SPS and vacuum induction melting were compared.It is shown that Mg2-xNdxNi alloys prepared by SPS exhibit a multiphase structure,demonstrating better hydrogen absorption/desorption kinetics performances but deterioration in hydrogen storage capacity with increasing Nd content,and Mg alloying is prompted by Nd.Sintering temperature has an obviously effect on the hydrogen storage capacity and the plateau properties of PCT curves.When Mg2-xNdxN alloys contain Mg or NdMg12 phase,their PCT curves exhibit two platforms.Compared with the alloys prepared by casting,the Mg1.7Nd0.3Ni hydrogen storage alloy prepared by SPS has better absorption/desorption kinetics properties but awful hydrogen storage capacity,hydrogen desorption rate and platform properties of PCT curves.

     

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