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March 10, 2026Fatigue & Fracture of Engineering Materials & Structures0 citations

Unveiling the Role of the Residual Stress in TiC‐Based Self‐Healing Coating on the Creep‐Fatigue Properties of 321 Steel

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WLWei LiYLYuxuan LongGBGuowei Bo

Key Points

  • This research investigates how residual stress in a TiC-based self-healing coating affects the creep-fatigue properties of 321 steel.
  • Experimental characterization of TiC-based coating on AISI 321 steel.
  • Multiscale finite element analysis (FEA) to simulate residual stress distribution.
  • Microindentation testing to validate simulation results.
  • Coated specimens showed an 18.4% increase in yield strength compared to uncoated samples.
  • Creep-fatigue life extended by 26.3% in coated specimens under cyclic loading conditions.

Abstract

ABSTRACT Residual stress in coatings significantly influences stainless steel mechanical properties, particularly tensile and creep‐fatigue performance. This study combines experimental characterization and multiscale finite element analysis (FEA) to systematically investigate these effects on coated AISI 321 steel. A TiC‐based self‐healing coating system—comprising Al 2 O 3 ‐13wt%TiO 2 (AT13), TiC, and NiCrAlY layers—was deposited via supersonic plasma spraying. Macroscale FEA and microindentation testing characterized the residual stress distribution, showing strong agreement between simulation and experiment. Integrated multiscale modeling revealed that spray parameters (pass frequency and deposition thickness) critically govern residual stress development. The resulting compressive stresses enhanced tensile properties through stress compensation and improved creep‐fatigue resistance via load redistribution. Under cyclic loading (180 MPa, 5‐s dwell), the coated specimens exhibited an 18.4% increase in yield strength and a 26.3% extension in creep‐fatigue life compared to uncoated samples.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69af951a70916d39fea4c450https://doi.org/10.1111/ffe.70237
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