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原位磁化X射线粉末衍射法测还原铁粉的微观磁致伸缩系数 被引量:1
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作者 罗新 刘世雄 《东华理工学院学报》 CAS 2004年第2期178-180,共3页
首次报导X射线粉末衍射法测量铁粉晶胞的磁致伸缩系数。还原铁粉样品原位磁化后 ,铁立方晶胞产生磁致伸缩效应 ,晶胞参数的变化引起衍射峰位置和晶面间距的变化。实验测得铁晶胞λ1 0 0 为 3 .3 3× 10 - 4,此结果表明铁晶胞的微观... 首次报导X射线粉末衍射法测量铁粉晶胞的磁致伸缩系数。还原铁粉样品原位磁化后 ,铁立方晶胞产生磁致伸缩效应 ,晶胞参数的变化引起衍射峰位置和晶面间距的变化。实验测得铁晶胞λ1 0 0 为 3 .3 3× 10 - 4,此结果表明铁晶胞的微观磁致伸缩系数比棒状、薄膜或粉末压片的系数大约 16倍。对此现象进行了合理的理论解释 ,指出大块材料中的粉末多晶之间具有较大的空隙 。 展开更多
关键词 X射线粉末衍射法 铁晶胞 磁致伸缩 原位磁化
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Microstructure and mechanical properties of in situ TiB_2/7055 composites synthesized by direct magnetochemistry melt reaction 被引量:1
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作者 钟龙华 赵玉涛 +3 位作者 张松利 陈刚 陈帅 刘永红 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第9期2502-2508,共7页
In situ TiB2/7055 composites were successfully synthesized via magnetic chemical direct melt reaction from 7055 (Al-3B)?Ti system. The phase composition and the microstructure of the composites were investigated by... In situ TiB2/7055 composites were successfully synthesized via magnetic chemical direct melt reaction from 7055 (Al-3B)?Ti system. The phase composition and the microstructure of the composites were investigated by XRD, OM and SEM technologies, and the mechanical and wear properties were tested. The results indicate that with the pulsed magnetic field assistance, the morphologies of in situ TiB2 particles are mainly hexagonal-shape or nearly spherical, the sizes are less than 1 μm, and the distribution of the matrix is uniform. Compared the microstructures of the 7055 aluminum matrix composites synthesized without pulsed magnetic field, the average size ofα(Al) phase with pulsed magnetic field assistance is decreased from 20 to 10μm, the array of the second phase is changed from continuous net-shape to discontinuous shape. With the pulsed magnetic field, the tensile strengths of the composites are enhanced from 310 to 330 MPa, and the elongations are increased from 7.5%to 8.0%. In addition, compared with matrix alloy, the wear mass loss of the composites is decreased from 111 to 78 mg under a load of 100 N for 120 min. 展开更多
关键词 in situ composite magnetic chemistry microstructure mechanical properties
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Preparation and characterization of carbonyl iron soft magnetic composites with magnesioferrite insulating coating layer 被引量:3
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作者 Shi-geng LI Ru-tie LIU Xiang XIONG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第11期3067-3077,共11页
Spherical carbonyl iron(Fe)powders were coated with magnesioferrite(MgFe2O4)insulating coating layer and then mixed with epoxy-modified silicone resin(ESR).Soft magnetic composites(SMCs)were fabricated by compaction o... Spherical carbonyl iron(Fe)powders were coated with magnesioferrite(MgFe2O4)insulating coating layer and then mixed with epoxy-modified silicone resin(ESR).Soft magnetic composites(SMCs)were fabricated by compaction of the coated powders and annealing treatment.Transmission electron microscopy(TEM),scanning electron microscopy(SEM),energy dispersive spectroscopy(EDS),X-ray diffractometry(XRD)and X-ray photoelectron spectroscopy(XPS)revealed that the MgFe2O4 layer was coated on the surface of the iron powders.The magnetic properties of SMCs were determined using a vibrating sample magnetometer and an auto testing system for magnetic materials.The results showed that the SMCs prepared at 800 MPa and 550℃ exhibited a significant core loss of 167.5 W/kg at 100 kHz and 50 mT. 展开更多
关键词 soft magnetic composites in-situ oxidation preparation magnesioferrite insulating coating layer annealing treatment magnetic properties
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