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April 26, 2026Transactions of Nonferrous Metals Society of China3 citationsOpen Access

Effect of texture and grain structure on tensile strength and anisotropy in annealed Al−Cu−Mg alloy with high Cu/Mg mass ratio

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GHGuang-yu HEZLZhi-yi LIUYHYang-Cheng Hu

Key Points

  • This research aims to understand how texture and grain structure affect the tensile strength and anisotropy of a specific aluminum alloy under different conditions.
  • Studied texture and grain structure evolution during annealing using XRD, DSC, SEM, EBSD, and TEM.
  • Observed the effects of rolling temperatures on the alloy's properties including tensile strength and anisotropy.
  • Analyzed the transition stages in tensile strength response due to texture variations.
  • Identified four stages of tensile strength response during annealing at 350 °C, including fast softening and rapid strengthening.
  • Lower YS/UTS ratio and minimal anisotropy observed in plates with Goss + Cube textures and fine equiaxed grains.
  • Higher rolling temperatures resulted in finer recrystallized grains and a reduction in the Copper to Brass texture ratio.

Abstract

Texture and grain structure evolution during annealing and their effects on tensile strength and anisotropy were studied using XRD, DSC, SEM, EBSD and TEM. The results indicate that elevated rolling temperatures reduce the f ( g ) max(Copper) / f ( g ) max(Brass) ratio, increase S−Brass fine bands, and promote S-dispersoid precipitation, leading to finer recrystallized grains. Dominant recrystallization textures transform from Goss + P to Goss and then to Goss + Cube with increasing rolling temperature. Annealing at 350 °C shows four tensile strength response stages: fast softening I, rapid strengthening II, slow strengthening III, and slow softening IV. The transition from Stages I to II is driven by the formation of strong Goss and P textures, and Stage IV is linked to enhanced Cube texture. Plates with Goss + Cube textures and fine equiaxed grains exhibit the lowest YS/UTS ratio and minimal anisotropy.

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Cite This Study

HE et al. (2026) studied this question.

synapsesocial.com/papers/69edad8f4a46254e215b5243https://doi.org/10.1016/s1003-6326(25)66991-3
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