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April 11, 2026Fatigue & Fracture of Engineering Materials & Structures0 citations

Effect of Burrs on the Fatigue Strength of Metallic Structures: Experimental Study on Open Hole Ti‐6Al‐4V Specimens With Burrs

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SFSantiago Frutos-TaravilloAirbus (France)EPEric ParoissienInstitut Clément AderYLYann LandonCentre National de la Recherche Scientifique

Key Points

  • This study aims to understand how burrs alter the fatigue strength of Ti‐6Al‐4V metallic structures and identify the underlying mechanisms.
  • Conducted experimental investigations on open-hole Ti‐6Al‐4V specimens with varying burr sizes.
  • Decoupled effects of macrogeometric stress concentration, residual stresses, and burr tip microgeometric features.
  • Utilized striation counting to analyze crack propagation behavior.
  • Found a non‐monotonic relationship between burr size and fatigue strength reduction.
  • Rejected the macrostress concentration hypothesis as a cause of fatigue knock‐down.
  • Identified a unified failure mechanism aligning with pure crack propagation behavior.

Abstract

ABSTRACT One‐Way‐Assembly accelerates aerospace manufacturing but risks leaving drilling burrs at the interfaces of mechanical joints. The detrimental impact of burrs on fatigue strength is widely recognized in the literature, but the mechanisms driving this “knock‐down” remain unclear. This study investigates this phenomenon using open‐hole Ti‐6Al‐4V specimens. The experimental campaign systematically decouples the effects of macrogeometric stress concentration, residual stresses, and burr tip microgeometric features. Results revealed a non‐monotonic relationship between burr size and the fatigue “knock down,” leading to rejecting the macroscopic stress concentration hypothesis. Similarly, stress‐relief heat treatments failed to mitigate the fatigue “knock‐down,” ruling out residual stresses as a governing factor. Instead, a unified failure mechanism was identified. All detrimental configurations collapsed into a single S‐N cluster. Striation counting confirmed this cluster aligns with the material's pure crack propagation behavior, demonstrating that sharp burr tip features severely shorten the crack nucleation phase.

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Cite This Study

Frutos-Taravillo et al. (2026) studied this question.

synapsesocial.com/papers/69d9e64e78050d08c1b76a47https://doi.org/10.1111/ffe.70283
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