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巨磁热效应材料Gd_5Si_xGe_(4-x)三元合金的制备及晶体结构 被引量:1
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作者 李卓棠 吴佩芳 +1 位作者 张晓燕 潘璋敏 《上海大学学报(自然科学版)》 CAS CSCD 2000年第1期35-38,43,共5页
三元合金 Gd5Six Ge4- x是一种具有巨磁热效应的材料 .作者用熔炼法在氩气气氛中合成了四种 Gd5Six Ge4- x样品 (其中 x =4 ,3 .2 ,2 .16,2 ) .粉末 X射线衍射结果表明 ,当 4≥ x >2时 Gd5Six Ge4- x为正交晶体 ;当 x =2时Gd5Si2 Ge2... 三元合金 Gd5Six Ge4- x是一种具有巨磁热效应的材料 .作者用熔炼法在氩气气氛中合成了四种 Gd5Six Ge4- x样品 (其中 x =4 ,3 .2 ,2 .16,2 ) .粉末 X射线衍射结果表明 ,当 4≥ x >2时 Gd5Six Ge4- x为正交晶体 ;当 x =2时Gd5Si2 Ge2 畸变成单斜晶体 .随着 Ge量的增加 ,晶胞参数及单胞体积都随之增加 . 展开更多
关键词 钆-硅-锗合金 晶体结构 制备 磁热效应材料
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Heusler合金Ni-Mn-Ga和NaZn_(13)型化合物La(Fe,Co,M)_(13),M=Si,Al的巨大磁熵变(英) 被引量:4
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作者 胡凤霞 沈保根 《中国科学院研究生院学报》 CAS CSCD 2002年第2期192-197,共6页
在Heusler合金Ni Mn Ga和NaZn1 3型化合物La(Fe,Co,M)1 3,M =Si,Al中很宽温度区间发现巨大磁熵变△S。这两种材料在室温区的磁熵变△S均显著地超过单质稀土Gd并达到著名的磁热效应材料Gd5Si2 Ge2 合金的磁熵变幅度.Heusler合金Ni Mn Ga... 在Heusler合金Ni Mn Ga和NaZn1 3型化合物La(Fe,Co,M)1 3,M =Si,Al中很宽温度区间发现巨大磁熵变△S。这两种材料在室温区的磁熵变△S均显著地超过单质稀土Gd并达到著名的磁热效应材料Gd5Si2 Ge2 合金的磁熵变幅度.Heusler合金Ni Mn Ga中的巨大磁熵变来源于具有一级相变特征的马氏结构相变。NaZn1 3型化合物La(Fe,Co,M)1 3,M =Si,Al中异常巨大的磁熵变与合金中的强的磁晶耦合相关,表现为居里温度附近晶格的巨大负膨胀。材料的低价格和其巨大磁熵变表明,Heusler合金Ni Mn Ga和NaZn1 3型化合物La(Fe,Co,M)1 3,M =Si,Al在很宽的高温区,尤其在室温区作为磁制冷工质非常有吸引力。 展开更多
关键词 熵变 制冷工具 HEUSLER合金 NI-MN-GA NaZn13型化合物 磁热效应材料
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Enhanced magnetocaloric performances and tunable martensitic transformation in Ni_(35)Co_(15)Mn_(35-x)Fe_(x)Ti_(15) all-d-metal Heusler alloys by chemical and physical pressures 被引量:1
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作者 Yong Li Liang Qin +1 位作者 Siyuan Huang Lingwei Li 《Science China Materials》 SCIE EI CAS CSCD 2022年第2期486-493,共8页
The solid-state magnetic cooling(MC)method based on the magnetocaloric effect(MCE)is recognized as an environmentally friendly and high-energy-efficiency technology.The search or design of suitable magnetic materials ... The solid-state magnetic cooling(MC)method based on the magnetocaloric effect(MCE)is recognized as an environmentally friendly and high-energy-efficiency technology.The search or design of suitable magnetic materials with large MCEs is one of the main targets at present.In this work,we apply the chemical and hydrostatic pressures in the Ni_(35)Co_(15)Mn_(35-x)Fe_(x)Ti_(15) all-d-metal Heusler alloys and systematically investigate their crystal structures,phases,and magnetocaloric performances experimentally and theoretically.All the alloys are found to crystallize in an ordered B2-type structure at room temperature and the atoms of Fe are confirmed to all occupy at sites Mn(B).The total magnetic moments decrease gradually with increasing Fe content and decreasing of volume as well.The martensitic transformation temperature decreases with the increase of Fe content,whereas increases with increasing hydrostatic pressure.Moreover,obviously enhanced magnetocaloric performances can also be obtained by applied pressures.The maximum values of magnetic entropy change and refrigeration capacity are as high as 15.61(24.20)J(kg K)^(−1) and 109.91(347.26)J kg^(−1) withΔH=20(50)kOe,respectively.These magnetocaloric performances are superior to most of the recently reported famous materials,indicating the potential application for active MC. 展开更多
关键词 magnetocaloric performances magnetic properties pressure effects magnetocaloric effect all-d-metal Heusler alloys
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