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.
Zhu et al. (Tue,) studied this question.
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