日本金属学会誌
Online ISSN : 1880-6880
Print ISSN : 0021-4876
ISSN-L : 0021-4876
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Mg-Si クラスタ形成による Al-Mg-Si 合金の強度と延性の向上およびその機構
高田 健潮田 浩作秋吉 竜太郎池田 賢一高橋 淳波多 聰金子 賢治
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2015 年 79 巻 8 号 p. 391-397

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  Tensile properties of Al-Mg-Si alloy with Mg-Si clusters was compared with that with β″ precipitate with the same strength. It was found that the elongation of the alloy with Mg-Si cluster was greater than the alloy with β″ precipitate because of high work hardening rate, in particular at large strain region. Decomposition of Mg-Si cluster into solute Mg and Si atoms during the tensile deformation test were also shown by differential scanning calorimetry (DSC). Three types of dislocation characteristics were observed from these alloys by transmission electron microscopy (TEM), homogeneous distribution of dislocation with β″ precipitate, cell structure with Mg and Si in solid solution, and combination of them with Mg-Si cluster. For the case of alloy with Mg-Si cluster, the yield strength was significantly increased due to the cutting mechanism. Simultaneously, the elongation was greatly improved due to the presences of decomposed solute Mg and Si atoms with plastic strain, which are inferred to prevent dynamic recovery in the later stage of tensile test. Consequently, the alloy with clusters has advantages from both alloys with precipitates and solutes, in terms of strength and elongation balance among the conventional 6000 series and 7000 series Al alloys.

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