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February 21, 2026Crystals0 citationsOpen Access

Magnetic Barkhausen Noise in Steels: Fundamentals, Crystallographic Texture, Stress–Microstructure Coupling, and Industrial Applications

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PVPolyxeni VournaPFPinelopi P. FalaraAKAphrodite Ktena

Key Points

  • The review aims to explore the relationship between crystallographic texture, dislocation density, and magnetic domain dynamics in steels.
  • Summarizes recent findings in MBN analysis as a nondestructive diagnostic tool
  • Discusses the impact of crystal structure symmetry and residual stresses
  • Reviews modeling techniques and integrations with EBSD and XRD
  • Demonstrates a strong link between microstructural characteristics and MBN responses
  • Highlights the significance of residual stress gradients in influencing magnetic responses
  • Indicates the potential for enhanced materials design through MBN integration with other techniques

Abstract

Magnetic Barkhausen noise (MBN) analysis has recently emerged as a powerful nondestructive tool for probing crystallographic orientation, phase transformation, and microstructural stress distribution in ferromagnetic materials. This review aims to summarize recent advances in understanding the relationship between crystallographic texture, dislocation density, and magnetic domain dynamics across different classes of steels and surface coatings. Emphasis is placed on the influence of crystal structure symmetry, residual stress gradients, and coating–substrate interactions on the MBN response. The article also discusses recent modeling approaches and potential integration of MBN with complementary techniques such as EBSD and XRD for microstructural diagnostics and materials design.

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Cite This Study

Vourna et al. (2026) studied this question.

synapsesocial.com/papers/69994cdf873532290d021ca9https://doi.org/10.3390/cryst16020149
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