Estimation of creep deformation behavior in Mg-Al alloys by using .THETA. projection method.

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  • Mg‐Al系合金のクリープ変形挙動のθ法による評価
  • Mg Alケイ ゴウキン ノ クリープ ヘンケイ キョドウ ノ シータホウ ニ

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Abstract

The creep deformation behavior of magnesium and Mg-Al alloys was analyzed by using the θ projection concept based on the following equation:<br>ε=θ1{1-exp(-θ2t)}+θ3{exp(θ4t)-1}<br>where ε is creep strain, t time and θ14 the parameters determined by curve fitting. The equation was able to reproduce the creep curves even in the tertiary creep stage. In solid solution hardened alloys containing up to 6 mass% Al parameters θ1 and θ3 were independent of temperature, but temperature dependent in the precipitation hardened alloy containing 9 mass%Al. The activation energy for θ1 and θ3 in Mg-9 mass%Al alloy was 30kJ/mol, and this value was equal to that of discontinuous grain boundary precipitation of Mg17Al12 during aging. The activation energy for θ2 related to strain hardening rate was 100kJ/mol, and that for θ4 related to recovery or weakening rate was 134kJ/mol. The activation energy of θ4 was almost same as that of self-diffusion in pure Mg, indicating that the recovery or weakening rate is controlled by climbing of dislocations.

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