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March 19, 2026Advanced Engineering Materials0 citations

Through‐Thickness Inhomogeneity on Microstructure, Mechanical Properties, and Corrosion Resistance of Al–Cu–Li Alloy Thick Plate

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CZCongcong ZhuKHKun HeGMGuoling Mao

Key Points

  • This research aims to understand how thickness affects the microstructure, mechanical properties, and corrosion resistance of an Al–Cu–Li alloy.
  • Evaluated mechanical properties and corrosion resistance in different layers of thick plates.
  • Analyzed microstructure along thickness, focusing on texture and precipitation phases.
  • Assessed changes in strength and intergranular corrosion (IGC) across layers.
  • Strength increased from 578 MPa at the surface to 649.7 MPa at the T/2 layer.
  • Intergranular corrosion decreased from the surface layer to T/2 layer.
  • Texture varied between layers, with different phase densities observed, particularly T1 phase.

Abstract

The relationship between mechanical properties, corrosion resistance, and microstructure inhomogeneity along the thickness direction of an aerospace‐grade Al–Cu–Li alloy thick plates were evaluated. The results showed a progressive enhancement in mechanical properties from surface layer through T/4 layer and then to T/2 layer. The strength increased from 578 MPa to 607.7 MPa and then to 649.7 MPa. The IGC degree of Al–Cu–Li alloy thick plates decreased gradually from the surface layer to T/2 layer. The texture at the surface layer mainly consisted of recrystallization texture, shear texture, and a small amount of deformation texture. The texture at the T/2 layer was mainly the deformation texture. The main precipitation phase of the alloy after T86 aging was T 1 phase, with small amounts of θ’ and δ’ phases. A distinct density gradient of T 1 phase was observed along the thickness, progressively increasing from surface layer to T/4 layer and reaching maximum in T/2 layer. The combined effect of texture characteristics and aging precipitates, the mechanical properties, and corrosion resistance of T/2 layer were better than surface layer.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/69bb92be496e729e6298042ahttps://doi.org/10.1002/adem.202502294
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