ヘテロナノ組織を活用した高濃度コルソン合金の高強度化

  • 松浦 佳弘
    金沢大学大学院 自然科学研究科 機械科学専攻
  • 酒井 洋徳
    金沢大学大学院 自然科学研究科 機械科学専攻
  • 渡邊 千尋
    金沢大学 理工研究域 機械工学系
  • 隅野 裕也
    株式会社神戸製鋼所 素形材業部門 銅板ユニット 銅板工場 開発室
  • 三浦 博己
    豊橋技術科学大学 機械工学系

書誌事項

タイトル別名
  • Improvement in Strength of High Concentration Corson Alloy with the Heterogeneous–Nano Structure
  • ヘテロナノ ソシキ オ カツヨウ シタ コウノウド コルソン ゴウキン ノ コウキョウドカ

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抄録

<p>Effects of pre–aging of Corson alloys with high concentrations of Ni and Si (Cu–4.2mass%Ni–0.93mass%Si) followed by heavy cold rolling and full–aging on strengthening were systematically investigated. Especially, development of heterogeneous–nano (HN) microstructure was focused. And the relationship of mechanical/electrical properties was precisely examined. The pre–aged alloys exhibited a considerable strengthening after 90% cold rolling. This was attributed to the increase in the volume fraction of deformation twin domains in the HN microstructure after cold rolling as well as the precipitation strengthening. The sample prepared by a thermo–mechanical process via pre–aging at 723 K, subsequent cold rolling and full–aging at 673 K for 600 s exhibited the best strength/conductivity balance with an ultimate tensile strength (UTS) of 1096 MPa and electrical conductivity (E) of 29%IACS. When examined the effects of solid–solution (SS) temperature on the microstructure and properties, SS at 1223 K derived finer grain size than at 1323 K and the achieved best balance of UTS and E with 1061 MPa and 33%IACS. Therefore, grain refinement prior to pre–aging had no significant effect on strengthening but contributed to modification of electrical conductivity.</p>

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