influence of milling conditions on magnetic properties of nd

Influence of ball milling on atomic structure and

OSTI.GOV Journal Article: Influence of ball milling on atomic structure and magnetic properties of Co{sub 40}Fe{sub 22}Ta{sub 8}B{sub 30} glassy alloy

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Magnetic properties of ball-milled SrFe12O19

The room-temperature magnetic properties of ball-milled strontium hexaferrite particles consolidated by spark-plasma sintering are strongly influenced by the milling time. Scanning electron microscopy revealed the ball-milled SrFe 12 O 19 particles to have sizes varying over several hundred nanometers.

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Effect of High-Energy Ball Milling on the

These outstanding magnetic properties may be associated with high density and uniform microstructure created by SPS on the basis of fine precursor powders produced by high-energy ball milling. High-density fine-grained Ni0.5Zn0.5Fe2O4 ferrite ceramics were synthesized by spark plasma sintering (SPS) in conjunction with high energy ball milling.

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Influence of wet milling conditions on the

Influence of wet milling conditions on the structural and magnetic properties of Ni3Fe nanocrystalline intermetallic compound By Bogdan V. Neamtu, Ionel Chicinas, Olivier Isnard, Florin Popa and Viorel Pop

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Influence of Cooling Condition of Casted Strips

T1 - Influence of Cooling Condition of Casted Strips on Magnetic Properties of Nd–Fe–B Sintered Magnets. AU - Jung, Hwaebong. AU - Kim, Sumin. AU - Moon, Hongjae. AU - Oh, Yoon S. AU - Lee, Young Joo. AU - Lee, Hyun Sook. AU - Lee, Wooyoung. PY - 2018/11/1. Y1 - 2018/11/1

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Influence of Wet Milling Conditions on the

Request PDF | Influence of Wet Milling Conditions on the Structural and Magnetic Properties of Ni3Fe Nanocrystalline Intermetallic Compound | Nanocrystalline Ni3Fe compound is obtained by dry and

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Influence of milling conditions on magnetic

Influence of milling conditions on magnetic properties of Sm/sub 2/Fe/sub 17/N/sub 3/ particles Tajima, S.; Hattori, T.; Kato, Y. Abstract. Publication: IEEE Transactions on Magnetics. Pub Date: November 1995 DOI: 10.1109/20.489700 Bibcode: 1995ITM.31.3701T full text sources. Publisher |

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The effect of milling speed on the magnetic properties of

magnetic domain size offers the possibility to eliminate the influence of magnetic walls [4, 5]. In order to improve such magnetic properties, nanostructured FeNi alloys have been produced by distinct methods such as thermal evaporation [6], electrodeposition [7], metal-plasma reaction [8]

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Influence of Mechanical Milling on Magnetic

After milling for 25h, grain size of a-Fe reached about 7nm. Magnetic properties increased with milling time. Under crystallization at 700°C for 30 minutes, samples milled for 25h had the best comprehensive magnetic properties (remanence, coercivity and magnetic energy product).

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Influence of Mechanical Milling on Magnetic

After milling for 25h, grain size of a-Fe reached about 7nm. Magnetic properties increased with milling time. Under crystallization at 700°C for 30 minutes, samples milled for 25h had the best comprehensive magnetic properties (remanence, coercivity and magnetic energy product).

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INFLUENCE OF BALL MILLING PROCESS ON STRUCTURAL AND

E32 Influence of ball mIllIng process on structural and magnetIc propertIes of la0.7sr0.3mno3 manganIte Revista EIA Rev.EIA.Esc.Ing.Antioq / Publicación semestral Escuela de Ingeniería de Antioquia —EIA— INFLUENCIA DEL PROCESO DE MOLIENDA EN LAS PROPIEDADES ES-TRUCTURALES Y MAGNETICAS DE MANGANITAS La0,7Sr0,3MnO3 RESUMEN Este trabajo

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The influence of fabrication conditions on

In this paper, we present the results of an investigation of the influence of fabrication conditions on the structure and magnetic properties of Nd 10.5-x Fe 83.5-y Co x Nb y B 6 (x=0-6 y=1.5-3) nanocomposites prepared by melt-spinning combined with annealing. By changing the quenching rate (by varying the tangential velocity of the copper wheel from 10 m s-1 to 40 m s

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Influence of high-energy milling on the

The water atomized Fe-Si-Al soft magnetic alloy powder was milled by high-energy milling method.The microstructure and crystal structure of the powder milled for different time were investigated using SEM and XRD,and which static magnetic parameters and complex permeability(μ_r=μ′-jμ″) within 2~18GHz were measured.With the increase of milling time,the aspect ratio of the milled powder

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Influence of milling time on magnetic

Magnetic properties were measured using a vibrating sample magnetometer (VSM-7360). As milling time increases, the saturation magnetization is observed to increase. Since the coercivity depends on the movement of the magnetic domain in magnetization, the smaller the

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Effects of Milling Conditions on Nano-scale

The influence of the milling conditions on the nano-scale MnFe(P,Si) particles obtained by surfactant-assisted high-energy ball milling has been investigated by X-ray diffraction (XRD) and magnetic

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The Influence of Milling Conditions on the

[13] Neamtu BV, Chicinas I, Isnard O, Popa F, Pop V, Influence of wet milling conditions an the structural and magnetic properties of Ni3Fe nanocrystalline intermetalic compound, Intermetalics 2011; 19: 19-25. DOI: 10.1016/jtermet.2010.09.004

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(PDF) Influence of wet milling conditions on the

Influence of wet milling conditions on the structural and magnetic properties of Ni3Fe nanocrystalline intermetallic compound

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Influence of Mechanical Milling on Magnetic

Influence of ball milling on their magnetic properties had been investigated by means of X-Ray Diffraction (XRD), Transmission Electron Microscopy (TEM) and Vibrating Sample Magnetometer (VSM) etc.

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Influence of Mechanical Milling on Magnetic

After milling for 25h, grain size of a-Fe reached about 7nm. Magnetic properties increased with milling time. Under crystallization at 700°C for 30 minutes, samples milled for 25h had the best comprehensive magnetic properties (remanence, coercivity and magnetic energy product).

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Influence of high energy milling on the

Influence of high energy milling on the microstructure and magnetic properties of the Al–Cu–Fe phases: the case of the i-Al 64 Cu 23 Fe 13 quasicrystalline and the ω

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