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加工对吸氢La0.6Pr0.4Fe11.4Si1.6B0.2合金磁热稳定性的影响研究
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中国北方稀土(集团)高科技股份有限公司生产部 内蒙古 包头 包头稀土研究院 包头,包头稀土研究院,北京科技大学新金属材料国家重点实验室 北京

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TB64

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国家高技术研究发展计划(863)(项目号2011AA03A404)、内蒙古包钢稀土(集团)高科技股份有限公司博士后工作站项目资助(项目号201H1721)和内蒙古自然科学基金资助(项目号2013MS0802)


Processing effect on the hydrogenation of La0.6Pr0.4Fe11.4Si1.6B0.2 magnetocaloric alloy
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China Northern Steel Rare-earth Group Hi-tech Co,Ltd Baotou,,State Key Laboratory for Advanced Metals and Materials,University of Science and Technology Beijing

Fund Project:

SB RAS Project (III.23.2.1); Fundamental Research Project of Byelorussian AS and Fundamental Research Program OEMMPU RAS “Multiscale Investigation of Properties and Behavior of Advanced Materials”

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    摘要:

    采用工业原料和感应熔炼法制备出La0.6Pr0.4Fe11.4Si1.6B0.2板锭,通过高温短时退火获得NaZn13型主相合金,进行氢化处理并研究了合金颗粒尺寸对吸氢处理后La0.6Pr0.4Fe11.4Si1.6B0.2氢化物磁热性能的影响。外形尺寸3-5 cm的大尺寸样品在吸氢后出现严重粉化,呈层片状剥离的破碎状态,但心部仍保持完整块状。外形尺寸小于1 cm的小尺寸样品吸氢后形状保持完好。La0.6Pr0.4Fe11.4Si1.6B0.2合金存在吸氢粉化临界尺寸。采用外形尺寸小于1 cm的样品吸氢能够防止合金氢化粉化现象发生,有利于铸造样品直接吸氢获得一定尺寸和几何形状的块状La0.6Pr0.4Fe11.4Si1.6B0.2Hx样品。

    Abstract:

    Thick plate of La0.6Pr0.4Fe11.4Si1.6B0.2 alloy was produced with industrial raw materials by induction melting method and NaZn13 type magnetocaloric phase was obtained by annealing at high temperature for short time. The annealed alloy was hydrogenated with various shapes and sizes. The bulk sample with a size of 3-5 cm was broken to powders from the outside to inside like an onion with a smooth ball shape center part left during the hydrogenation process, while the small samples with sizes less than 1 cm still hold their original shapes. The critical crack size for the La0.6Pr0.4Fe11.4Si1.6B0.2 alloy was 1 cm on hydrogenation to avoid breaking down to powders. The processing could be used to develop La0.6Pr0.4Fe11.4Si1.6B0.2Hx alloys with a certain sizes and shapes directly from casting alloy by hydrogenation absorption.

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张涛,刘翠兰,张勇.加工对吸氢La0.6Pr0.4Fe11.4Si1.6B0.2合金磁热稳定性的影响研究[J].稀有金属材料与工程,2017,46(6):1684~1688.[Zhang Tao, Liu Cuilan, Zhang Yong. Processing effect on the hydrogenation of La0.6Pr0.4Fe11.4Si1.6B0.2 magnetocaloric alloy[J]. Rare Metal Materials and Engineering,2017,46(6):1684~1688.]
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  • 收稿日期:2015-01-23
  • 最后修改日期:2015-03-05
  • 录用日期:2015-05-13
  • 在线发布日期: 2017-11-07
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