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April 12, 2026Materials Testing0 citationsOpen Access

Effect of roller burnishing parameters on the surface integrity and high-cycle fatigue performance of AISI 4340 steel

SÖSinan Önder

Key Points

  • The aim is to evaluate how roller burnishing parameters affect the surface and fatigue properties of AISI 4340 steel.
  • Conducted roller burnishing at 200 N and 350 N with one to three passes.
  • Measured surface roughness and subsurface microhardness.
  • Performed high-cycle axial fatigue tests at varying stress amplitudes.
  • Examined fatigue fracture surfaces post-testing.
  • Surface roughness improved by up to 94% compared to unburnished steel.
  • Fatigue limit increased from 550 MPa to 900–925 MPa (64–68% improvement).
  • Fatigue life at 800 MPa improved by approximately 89-fold.
  • Multiple passes at 350 N showed lower fatigue performance than single passes.

Abstract

Abstract This study investigates the effects of roller burnishing (RB) performed with different force and pass combinations on the surface integrity and high-cycle fatigue performance of quenched-and-tempered AISI 4340 steel. Fatigue specimens were roller burnished at 200 N (one pass) and 350 N (one and three passes). Surface roughness and subsurface microhardness measurements were performed. High-cycle, axial fatigue tests were conducted at various stress amplitudes and fatigue fracture surface examinations were carried out. RB improved surface roughness by up to 94 % compared with the unburnished condition. Turning and burnishing operations produced a shallow, softened layer whose depth varied with the applied parameters. The fatigue limit increased from 550 MPa to 900–925 MPa (64–68 % improvement), and at 800 MPa, fatigue life increased by approximately 89-fold; these gains rank among the highest improvements reported for burnishing-based surface treatments applied to AISI 4340 steel. Increasing the burnishing force enhanced fatigue resistance, whereas applying multiple passes at 350 N resulted in lower fatigue performance compared with a single pass at the same force, in line with the microhardness trends. Overall, the findings demonstrate that RB can significantly enhance the fatigue behaviour of AISI 4340 steel when process parameters are appropriately selected.

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Cite This Study

Sinan Önder (2026) studied this question.

synapsesocial.com/papers/69db375f4fe01fead37c5687https://doi.org/10.1515/mt-2025-0488
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