2023
DOI: 10.3390/ma16186315
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Diffusion of Alloying Cobalt Oxide (II, III) into Electrical Steel

Elmazeg Elgamli,
Fatih Anayi

Abstract: This paper aims to reduce power loss in electrical steel by improving its surface resistivity. The proposed approach involves introducing additional alloying elements through diffusion once the steel sheet reaches the desired thickness. Various effective techniques have been suggested and tested to enhance the resistivity of the strip. The method entails creating a paste by combining powdered diffusing elements with specific solutions, which are then applied to the steel’s surface. After firing the sample, a s… Show more

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“…Regarding the non-oriented electrical steels (NO FeSi), the total energy losses and magnetic flux density are important characteristics that are discussed in the literature [ 12 ], having an influence on the motor efficiency and torque [ 13 ]. In addition, grain sizes, defects, inclusions, precipitates, and grain orientations are important features in the control of magnetic properties of NO FeSi, being considered variable as a function of steel chemical composition [ 14 , 15 ], cutting technology [ 16 ], thermomechanical processing [ 17 , 18 ], and coating material [ 19 ].…”
Section: Introductionmentioning
confidence: 99%
“…Regarding the non-oriented electrical steels (NO FeSi), the total energy losses and magnetic flux density are important characteristics that are discussed in the literature [ 12 ], having an influence on the motor efficiency and torque [ 13 ]. In addition, grain sizes, defects, inclusions, precipitates, and grain orientations are important features in the control of magnetic properties of NO FeSi, being considered variable as a function of steel chemical composition [ 14 , 15 ], cutting technology [ 16 ], thermomechanical processing [ 17 , 18 ], and coating material [ 19 ].…”
Section: Introductionmentioning
confidence: 99%