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March 3, 2026Scripta Materialia3 citationsOpen Access

Anomalous strengthening in Fe-Cr-Ni-Al-Ti high entropy alloy via annealing-induced nanoprecipitate refinement

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HHH.W. HuYXY. XuSDS.Q. Ding

Key Points

  • The yield strength of the high entropy alloy reached an impressive 1178 MPa, influenced by nanoprecipitate refinement.
  • Coherent B2-NiAl precipitates of around 50 nm were induced during direct quenching from high-temperature annealing at 1273 K.
  • Observational analysis illustrates how different annealing temperatures affect precipitate behavior in the alloy's microstructure.
  • This finding highlights the potential for altering strengthening mechanisms through thermal processing in high-entropy alloys.

Abstract

This study reveals an anomalous precipitate evolution mechanism regulated by annealing temperature in an Fe 61.5 Cr 17.5 Ni 12 Al 8 Ti 1 high-entropy alloy. We found that direct quenching after high-temperature annealing at 1273 K can induce a high density of nanoscale, coherent B2-NiAl precipitates (∼50 nm) within the BCC matrix, bypassing the conventional two-step process requiring separate low-temperature aging. The micro-mechanism involves dissolution of precipitates as annealing places the BCC matrix of the alloy in the BCC single-phase region, followed by non-equilibrium precipitation driven by high supersaturation during quenching. In contrast, annealing at 1073–1173 K retains the BCC matrix of the alloy in the BCC+B2 two-phase region, leading solely to precipitate coarsening. This temperature-dependent pathway bifurcation switches the dominant strengthening mechanism from Orowan bypassing to dislocation shearing, elevating the precipitation strengthening contribution to ∼546 MPa and ultimately increasing the alloy's yield strength remarkably to ∼1178 MPa.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/69a75b24c6e9836116a21eaehttps://doi.org/10.1016/j.scriptamat.2026.117190
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