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November 19, 2025Fatigue & Fracture of Engineering Materials & Structures2 citationsOpen Access

Mechanistic Insights Into Fatigue Life Enhancement of High‐Strength Steel via Ultrasonic Impact Treatment

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SRShirley Garcia RuanoMTMike ThurstonMGMorteza Ghasri-Khouzani

Key Points

  • Fatigue life increased significantly, demonstrating a shift in crack initiation from surface to interior regions.
  • Impact energy resulted in grain refinement and higher surface hardness, improving fatigue performance.
  • Fractographic analysis revealed new crack initiation patterns due to strain hardening and residual stresses.
  • Enhancements suggest interior failure behavior improvement in treated high-strength steel.

Abstract

ABSTRACT This study explores the impact of Ultrasonic Impact Treatment (UIT) on the fatigue performance of high‐strength microalloyed steel commonly used in crankshaft applications. Building on prior observations of fatigue life improvement with UIT, this work focuses on unraveling the process–structure–performance relationships underpinning these enhancements. Microstructural analysis revealed significant grain refinement in the near‐surface layers, with deformation depth increasing at higher impact energies. This led to increased surface hardness and the development of deeper compressive residual stresses, particularly in samples treated with higher impact energy. Rotating bending fatigue testing showed a substantial improvement in fatigue life for UIT‐treated samples, with the endurance limit nearly doubling compared with untreated specimens. Fractographic analysis revealed a transition in crack initiation from surface defects in untreated samples to interior regions in UIT‐treated samples, characterized by the formation of noninclusion‐induced granular bright facets (GBFs). The observed fatigue enhancement is attributed to the synergistic effects of strain hardening and compressive residual stresses, which increase the surface crack threshold and promote interior crack initiation. This study provides new mechanistic insight into UIT‐induced fatigue resistance and interior failure behavior in high‐strength steels.

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Cite This Study

Ruano et al. (2025) studied this question.

synapsesocial.com/papers/6924fed8c0ce034ddc351308https://doi.org/10.1111/ffe.70138
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