软磁合金
- Soft magnetic alloy;magnetically soft alloy
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Fe-Co软磁合金真空磁场热处理工艺研究
Study on Fe-Co magnetically soft alloy vacuum magnetic heat treatment process
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Co基非晶软磁合金薄带的制备和磁学性能
Preparation and Magnetic Property of Co-based Amorphous Soft Magnetic Alloy Ribbon
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微晶软磁合金内部结构的X射线衍射研究
The X-Ray Diffraction Method for Studying Soft Magnetic Alloy with Ultrafine Grain Structure
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纳米晶Fe(1-x)Zrx软磁合金X射线衍射分析
X-ray Diffraction Study on Nanocrystalline Fe_ ( 1-x ) Zr_x Alloys
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改善Cu坡莫软磁合金性能的工艺研究
A Study of the Processes of Improving the Properties of Soft Magnetic Cu-Permalloy
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Fe基纳米晶软磁合金的发展
Development of Fe-Based Nanocrystalline Soft Magnetic Alloy
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Fe基微晶软磁合金的晶粒取向研究
Study on grain orientation of Fe based soft magnetic alloys composed of ultrafine grain structure
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不同Nb,Mo含量的Fe基微晶软磁合金磁性能的频谱特性
Frequency analysis on magnetic properties of the ultrafine crystalline Fe based soft magnetic alloys
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介绍了纳米晶软磁合金FeMB的磁畸结构、磁性能及其应用。
The magnetic domain structure , magnetic properties and applications of nanocrystalline soft magnetic Fe-M-B alloys were discussed in this paper .
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Nb量对Fe基超微晶软磁合金的结构与性能影响
Effect of Nb Concentrations on Structure and Properties of Ultrafine Crystalline Fe-based Soft Magnetic Alloy
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非晶软磁合金Fe(73.5)Cu1Nb3Si(13.5)B9的退火处理与性能研究
Annealing treatment of amorphous soft magnetic alloy Fe_ ( 73.5 ) Cu_1Nb_3Si_ ( 13.5 ) B_9 and investigation of its properties
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近年来,以Fe(Co)基为主的纳米晶软磁合金膜和纳米晶软磁颗粒膜的研究成为解决上述不足的突破点。
Very recently , breakthrough has been achieved in Fe ( Co ) - based nano-crystalline alloy film and granular film .
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研究了FeBSi非晶软磁合金的铁芯损耗谱P(f),发现P(f)具有分形结构。
The core loss spectrum P ( f ) of Fe-B-Si amorphous soft magnetic alloy has been studied . It is found that P ( f ) has the fractal structure .
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硅钢作为软磁合金一直受到人们的重视,当含Si量约6.5%时,磁感应强度最高,铁损最低,具有良好的磁性能。
As a floppy alloy , the silicon steel with a content of Si of 6.5 % has been paid much attention due to its maximum magnetic induction and minimum iron loss .
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就Fe(73.5)Cu1Mo3Si(13.5)B9超微晶软磁合金中Fe-B化合物的析出及其对合金结构和磁性的影响进行了研究。
The Fe B compound and its effects on the structure and soft magnetic properties in Fe_ ( 73.5 ) Cu_Mo_3si_ B_9 alloys composed of ultrafine grain were investigated .
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机械合金化制备Fe-Si-Al软磁合金的研究
Preparation of Fe-Si-Al Soft Magnetic Alloy by Mechanical Alloying
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Fe-Ni-Cr系软磁合金的正交实验研究
Orthogonal experiment study of Fe-Ni-Cr soft magnetical alloy
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Sendust软磁合金材料磁损耗研究及器件的制备
Magnetic loss and preparation of sendust soft-magnetic alloy material
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球磨法制备Co-Zr非晶软磁合金粉末
Co-Zr Amorphous Soft Magnetic Alloy Preparation by Mechanical Alloying
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高饱和磁感纳米晶软磁合金Fe-M-B的磁特性及应用前景
Properties and Prospective Applications of Nanocrystalline Fe-M-B Alloys
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NiCo软磁合金具有比NiFe高的AMR值,而且其饱和场较大,可使NiCo薄膜磁传感器的工作范围比NiFe薄膜传感器更大。
The NiCo soft alloy has larger AMR value than that of NiFe . And it can be used in the broad range of magnetic fields for its high saturation field .
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FeCo-2V软磁合金的晶粒细化与强化
Grain Refinement and Strengthening of FeCo-2V Soft Magnets
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在实验室熔炼了添加不同量镍的Fe-Cr系软磁合金,研究了其耐点蚀、盐雾腐蚀、浸泡腐蚀以及大气腐蚀的能力,并测量了其磁性能。
Fe-Cr soft magnetic alloys were prepared in laboratory . The resistance to pitting corrosion , corrosion with salt spray , immersion corrosion and atmospheric corrosion and magnetic properties of Fe-13 % Cr and Fe-17 % Cr alloys with the addition of Ni were systematically investigated .
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使用约旦分离方法对两种成分的纳米晶软磁合金在低频(低于1MHz)弱场(低于3.184A·m-1)条件下进行损耗分析,分别计算出涡流损耗系数、磁滞损耗系数和剩余损耗系数。
The magnetic loss coefficients of hysteresis , eddy current and surplus for the alloys under the condition of low frequency ( < 1 MHz ) and weak magnetic fields (≤ 3.184 A · m-1 ) were calculated by the method of Jordan separation .
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非晶软磁合金在传感器中的应用
The Application of Amorphous Soft Magnetic Alloy in Sensor 's Elements
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铁基非晶软磁合金的制备及磁性能研究
Preparation and magnetic properties study of Fe-based amorphous soft magnetic alloys
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新型耐蚀软磁合金的研制
Development of a novel corrosion - resisting soft magnetic alloy
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铁钴钒软磁合金损耗谱的分形结构
Fractal Structure of the Core Loss Spectrum of Fe-Co-V Soft Magnetic Alloy
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铁基纳米晶软磁合金起始磁导率的研究
Study on Initial Permeability of Fe-Based Nanocrystalline Soft Magnetic Alloy
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几种新型铁基纳米晶软磁合金的磁性能
Magnetic Properties of Several New Fe-Based Nanocrystalline Soft Magnetic Alloys