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- MnZn ferrite nanocrystallite 锰锌铁氧体纳米晶
- The results show the heat temperature and the ambience are the key factor to the magnetic property of MnZn ferrite. 研究结果表明:热处理温度和气氛是影响锰锌铁氧体性能的关键因素。
- MnZn ferrite powder was modificated by SrTiO3 sol and then filled into PTFE matrix to form MnZn ferrite/SrTiO3/PTFE composite. 采用SrTiO3溶胶对MnZn铁氧体进行表面改性,得到MnZn铁氧体/SrTiO3复合粉体,以PTFE为基体,制备了的MnZn铁氧体/SrTiO3/PTFE复合材料。
- Effects of the calcination temperature,time,atmosphere and Zn contents on magnetic property of MnZn ferrite prepared by supercritical fluid drying(SCFD) were investigated. 考察了铁氧体中锌含量、焙烧温度、时间以及焙烧气氛中氧含量等因素对超临界流体干燥法制备的锰锌铁氧体粉末磁性能的影响。
- A Study on MnZn Ferrite Core Loss in SMP 开关电源用MnZn铁氧体磁损耗研究
- Research on Magnetic Loss of MnZn Ferrite 锰锌铁氧体的磁损耗研究
- MnZn ferrites(MZF) nanocrystal were synthesized by sol-gel and auto-combustion method. 硝酸盐-柠檬酸溶胶凝胶低温燃烧合成获得锰锌铁氧体(MZF)纳米晶。
- Present Status and Trend of Low Loss MnZn Ferrite Materials 低损耗MnZn铁氧体材料的研究现状及发展趋势
- Current Status of High Initial Permeability MnZn Ferrite Materials 高磁导率锰锌铁氧体材料研究现状
- Study on nonlinear magnetic properties of MnZn ferrite 锰锌铁氧体非线性磁性能的研究
- Study on Hydrothermal Synthesis and Thermomagnetic Property of MnZn Ferrite 锰锌铁氧体的水热合成及其磁热性能研究
- Preliminary study on power and soft magnetic MnZn ferrite prepared with refined iron mine powders 用精铁矿粉制备功率软磁MnZn铁氧体的初步研究
- The crystallization mechanism of MnZn ferrite nanoscale particle in hydrothermal process 锰锌铁氧体纳米晶的水热晶化机理
- Studies on the relation between the composition of thermal sensitive MnZn Ferrite and curie temperature 温敏锰锌铁氧体的材料组成与居里温度的关系的研究
- Effect of Magnetic Field on Manganese Valence of MnZn Ferrite Prepared by Hydrothermal Synthesis 磁场对水热法制备锰锌铁氧体锰价态的影响
- Keywords mechanochemistry;ferrites nanocrystallite;synthesis mechanism; 机械化学;铁酸盐纳米晶;合成机理;
- MnZn Ferrite with Low Temperature Coefficient of Initial Permeability by Sol-gel Auto-combustion 用溶胶-凝胶自蔓延燃烧法制备的低温度系数MnZn铁氧体
- Effects of Anneal Temperature on the Properties of High Permeability MnZn Ferrite 预烧温度对高磁导率MnZn铁氧体性能的影响
- Research on manufacturing the high Bs MnZn ferrite from refined iron mine powders and Mn_3O_4 用精铁矿粉和Mn_3O_4制备高B_s铁氧体的探索
- During deformation, the ferrite grains nuc... 碳含量提高有利于铁素体晶粒细化。