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Ga替代对Gd_2(Fe,Co)_(17)化合物磁性的影响
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作者 张立刚 沈保根 +1 位作者 张绍英 张宏伟 《金属功能材料》 CAS 1998年第5期210-214,共5页
通过X射线衍射和磁性测量手段研究了Gd2(Fe0.8Co0.2)17-xGax(0≤X≤8)化合物的结构和磁性。实验结果表明Gd2(Fe0.8Co0.2)17-XCaX化合物均为菱方的Th2Zn17型结构,单胞体积V... 通过X射线衍射和磁性测量手段研究了Gd2(Fe0.8Co0.2)17-xGax(0≤X≤8)化合物的结构和磁性。实验结果表明Gd2(Fe0.8Co0.2)17-XCaX化合物均为菱方的Th2Zn17型结构,单胞体积V随Ca含量的增加单调上升,居里温度Tc和饱和磁化强度Ms随Ga含量的增加而单调下降。粉末取向样品的X射线衍射结果表明,随Ga含量的增加,化合物的室温易磁化方向由易面转变为易轴,Gd2(Fe.8Co0.2)17-XCaX化合物的3d亚晶格出现室温单轴各向异性可能与Ca原子的择优占位有关。 展开更多
关键词 磁化强度 居里温度 磁晶各向异性 金属间化合物
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Thermal expansion anomaly and spontaneous magnetostriction of Gd_2Fe_(17) compound
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作者 郝延明 梁飞飞 +2 位作者 张学敏 王芳 吴延昭 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第8期772-775,共4页
Materials with negative thermal expansion have many practical applications. However, these materials are known in only several oxide systems, and when the negative thermal expansion occurs, the contraction is usually ... Materials with negative thermal expansion have many practical applications. However, these materials are known in only several oxide systems, and when the negative thermal expansion occurs, the contraction is usually small and limited to a narrow temperature range beyond room temperature. For obtaining a compound with negative thermal expansion in broad temperature range, the structural and magnetic properties of Gd2Fe17 compound were investigated by means of X-ray diffraction and magnetization measurements. The Gd2Fe17 compound annealed at 1050 oC had a Th2Zn17-type structure. There existed an anisotropic strong spontaneous magnetostriction and a negative thermal expansion in Gd2Fe17 compound. The average thermal expansion coefficients was =–7.40×10–6/K in the temperature range of 294–453 K and =–1.80×10–5/K in 453–534 K, respectively. The spontaneous magnetostrictive deformation ωS decreased from 4.34×10–3 to near zero with temperature increasing from 294 to 572 K. The spontaneous linear deformation λc was much larger than λa at the same temperature below about 500 K. 展开更多
关键词 negative thermal expansion spontaneous magnetostriction gd2Fe17 compound rare earths
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