Magnetocaloric effect and H gradient in bulk La(Fe,Si)13Hy magnetic refrigerants obtained by HDSH

被引:15
|
作者
Bez, Henrique N. [1 ,2 ]
Eggert, Bruno G. F. [1 ]
Lozano, Jaime A. [1 ]
Bahl, Christian R. H. [2 ]
Barbosa, Jader R., Jr. [1 ]
Teixeira, Cristiano S. [3 ]
Wendhausen, Paulo A. P. [1 ]
机构
[1] Fed Univ Santa Catalina, Dept Mech Engn, BR-88040900 Florianopolis, SC, Brazil
[2] Tech Univ Denmark, Dept Energy Convers & Storage, Frederiksborgyej 399, DK-4000 Roskilde, Denmark
[3] Univ Fed Santa Catarina, Dept Engn Mat Engn, BR-89065300 Blumenau, Brazil
关键词
La(FeSi)(13)H-y magnetic refrigerants; Magnetocaloric materials; HUSH; Hydrogenation; LA-FE-SI; METAMAGNETIC TRANSITION; ENTROPY CHANGE; LAFE13-XSIX; PERFORMANCE; DEMAGNETIZATION;
D O I
10.1016/j.jmmm.2015.03.068
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Results are reported on the preparation of bulk parts of La(Fe,Si)(13)H-y via the Hydrogen-Decrepitation-Sintering-Hydrogenation (HDSH) process. Net shape parts for application in room temperature magnetic refrigeration have been produced in only 8 h of heat treatment which is considerably faster than the conventional ingot homogenization heat treatment of 7 days. The samples produced by HDSH showed higher amounts of hydrogen than the parts hydrogenated by the conventional method of thermal homogenization (20 h at 1423 K), milling to fine powder and subsequent hydrogenation. Hydrogenation parameters play an important role for the stability of the desired La(Fe,Si)(13) phase during the process. Hydrogen desorption was seen to occur at two temperature ranges as a result of infernal gradients. Dissimilar amounts of alpha-Fe were precipitated for different hydrogenation Limes. As a result, parrs produced via HDSH with 2 and 4 h of hydrogenation exhibited different magnetocaloric behaviours. For a hydrogenation step of 4 h, parts with a demagnetization factor of 0.49 showed an adiabatic temperature change (Delta T-ad) higher than 1 K for a temperature range of 40 K with a maximum value of 1.57 K for an applied magnetic field of 1.75 T. As the duration of the hydrogenation step of the HDSH process decreased to 2 h, Delta T-ad was larger than 1 K for a temperature range of 24 K. However the maximum value of Delta T-ad at 328 K was 2.2 K, which is 37.5% larger than the maximum value for a hydrogenation period of 4 h. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:125 / 128
页数:4
相关论文
共 50 条
  • [21] Direct Measurement of the Magnetocaloric Effect in La(Fe,Si,Co)13 Compounds in Pulsed Magnetic Fields
    Zavareh, M. Ghorbani
    Skourski, Y.
    Skokov, K. P.
    Karpenkov, D. Yu.
    Zvyagina, L.
    Waske, A.
    Haskel, D.
    Zhernenkov, M.
    Wosnitza, J.
    Gutfleisch, O.
    PHYSICAL REVIEW APPLIED, 2017, 8 (01):
  • [22] Magnetocaloric Properties of La(Fe, Co, Si)13 Bulk Material Prepared by Powder Metallurgy
    Katter, Matthias
    Zellmann, Volker
    Reppel, Georg Werner
    Uestuener, Kaan
    IEEE TRANSACTIONS ON MAGNETICS, 2008, 44 (11) : 3044 - 3047
  • [23] Magnetocaloric properties of La(Fe, Co, Si) 13 bulk material prepared by powder metallurgy
    Katter, Matthias
    Zellmann, Volker
    Reppel, Georg Werner
    Uestuener, Kaan
    IEEE Transactions on Magnetics, 2008, 44 (11 PART 2) : 3044 - 3047
  • [24] Thermomagnetic Generation Performance of Gd and La(Fe, Si)13Hy/In Material for Low-Grade Waste Heat Recovery
    Ma, Zhihui
    Chen, Haodong
    Liu, Xianliang
    Xing, Chengfen
    Wu, Meiling
    Wang, Yixu
    Liu, Peiran
    Ou, Zhiqiang
    Shen, Jun
    Taskaev, Sergey V.
    Long, Kewen
    Long, Yi
    Zhang, Hu
    ADVANCED SUSTAINABLE SYSTEMS, 2021, 5 (03):
  • [25] Pressure detector based on the itinerant-electron metamagnetic transition of La(Fe0.88Si0.12)13Hy
    Fujita, A.
    Fujieda, S.
    Fukamichi, K.
    Ohta, M.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2010, 43 (29)
  • [26] Rapid preparation of bulk La(Fe,Si)13Hy-based alloys for magnetic refrigeration near room temperature
    Li, Hangcheng
    Li, Chunhui
    Xia, Rui
    Zhang, Mingxiao
    Yan, Aru
    MATERIALS LETTERS, 2025, 382
  • [27] La(Fe,Si)13-based magnetic refrigerants obtained by novel processing routes (vol 320, pg 2252, 2008)
    Lyubina, Julia
    Gutfleisch, Oliver
    Kuz'min, Michael D.
    Richter, Manuel
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2009, 321 (21) : 3571 - 3577
  • [28] Novel approach in fabricating microchannel-structured La(Fe,Si)13Hy magnetic refrigerant via low-contamination route using dissolutive mold
    Imaizumi, Kaoru
    Fujita, Asaya
    Suzuki, Asuka
    Kobashi, Makoto
    Ozaki, Kimihiro
    MATERIALS & DESIGN, 2022, 217
  • [29] Heat capacity of the La(Fe0.88Si0.12)13 and La(Fe0.88Si0.12)13H1.5 compounds with a large magnetocaloric effect
    Podgornykh, S. M.
    Shcherbakova, Ye. V.
    PHYSICAL REVIEW B, 2006, 73 (18)
  • [30] Effects of interstitial H and/or C atoms on the magnetic and magnetocaloric properties of La(Fe, Si)13-based compounds
    Hu Zhang
    FengXia Hu
    JiRong Sun
    BaoGen Shen
    Science China Physics, Mechanics and Astronomy, 2013, 56 : 2302 - 2311