"Magnetic Barkhausen Noise Profile Analysis: Effect of Excitation Field Strength and Detection Coil Sensitivity in Case Carburized Steel"
written by Mohamed Mehemed Blaow, Brian A. Shaw,
published by Materials Sciences and Applications, Vol.5 No.5, 2014
has been cited by the following article(s):
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[1] High-spatial-resolution magnetic Barkhausen noise sensor with shielded receiver
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[2] Microstructural Characterization of Pack Carburized IS-2062 Low Carbon Steel using Magnetic Barkhausen Noise
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[3] Modeling of magnetic Barkhausen noise for layered ferromagnetic materials based on extended Ising model with double Boltzmann function
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[4] Effect of Pre-Weld Sand Blasting on Residual Stress Distribution in Ship Steel Using Magnetic Barkhausen Noise Technique
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[5] Non-Destructive Characterization of Subsurface Plastic Deformation in Case Carburized Steel Using Magnetic Barkhausen Noise Technique
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[6] Barkhausen Noise Probes and Modelling: A Review
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[7] Evaluation of Welding Current Impact on Residual Stresses Status in Ship-Building Steel Weldments Using Barkhausen Noise
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[8] Influence of measurement conditions on the Magnetic Barkhausen Noise properties
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[9] Novel non-contact torque measurement using the magnetomechanical effect
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[10] The effects of the structure characteristics on Magnetic Barkhausen noise in commercial steels
Journal of Magnetism and Magnetic Materials, 2018
[11] Characterisation of case depth in induction-hardened medium carbon steels based on magnetic minor hysteresis loop measurement technique
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[12] Material Characterization using Barkhausen Noise Analysis Technique-A Review
2017
[13] 基于多层结构磁滞模型的硬化层深度磁学表征与检测方法
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[14] Material characterization using Barkhausen noise analysis technique—a review
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[15] Evaluation of Residual Stresses in Grinding by Magnetic Barkhausen Noise
2016
[16] Detection of Iron Oxide Layer in Quenched and Tempered Gear Steel Using Magnetic Barkhausen Noise
Mechanics, Materials Science & Engineering Journal, Magnolithe, 2016
[17] An experimental procedure for surface damage assessment in railway wheel and rail steels
Wear, 2015