The effects of Ni substitution for Fe on phase constitutions, Curie temperature T-C, and magnetocaloric properties of melt-spun Fe50-xNixMn25Ga25 (x =0, 1, 3, 5 and 7) ribbons have been investigated. X-ray diffraction results show that the main phase in the Fe50-xNixMn25Ga25 (x = 0-7) alloy changed with the increase of Ni content from FCC structure for x = 0 into B2 structure for x = 1-7. Besides, the magnetic phase exhibits phase transition of ferromagnetic into paramagnetic state with increasing temperature for the samples with B2-type structure. The Curie temperature T-C of these ribbons varies in the temperature range of 232-257 K. The peak values of the maximal magnetic entropy change, -Delta S-M(max), are about 1.4-1.6 Jkg/K for Ni-substituted ribbons at a maximum applied field of 30 kOe. On the other hand, the relatively broader temperature range at the half maximum of Delta S-M peak (similar to 90 K), low-cost and nontoxic elements make Fe-Ni-Mn-Ga-based ribbons the promising candidates for magnetic refrigeration applications close to room temperature.
机构:
Lappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, FinlandLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
Namvari, Mahsa
Rosero-Romo, James. J.
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Univ Basque Country, BCMat, Basque Ctr Mat Applicat & Nanostruct, Sci Pk, Leioa 48940, SpainLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
Rosero-Romo, James. J.
Laitinen, Ville
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Lappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, FinlandLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
Laitinen, Ville
Kumthekar, Aditya
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Lappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, FinlandLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
Kumthekar, Aditya
Salazar, Daniel
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Univ Basque Country, BCMat, Basque Ctr Mat Applicat & Nanostruct, Sci Pk, Leioa 48940, SpainLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
Salazar, Daniel
Ullakko, Kari
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Lappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, FinlandLappeenranta Lahti Univ Technol LUT, Mat Phys Lab, Lappeenranta 53850, Finland
机构:
State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Yan Feng
Chen Fang
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State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Chen Fang
Yan-Ling Ai
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State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Yan-Ling Ai
Hai-Bo Wang
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College of Physics and Electronic Engineering,Taizhou UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Hai-Bo Wang
Li Gao
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College of Engineering Science and Technology,Shanghai Ocean UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Li Gao
Hong Chen
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State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University
Hong Chen
Xiao-Hai Bian
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State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversityState Key Laboratory of Solidification Processing,Northwestern Polytechnical University