マグネシウム合金 ZK60 の疲労過程に及ぼす双晶変形と時効の影響

  • 谷口 俊介
    早稲田大学大学院創造理工学研究科総合機械工学専攻
  • 北澤 留弥
    早稲田大学大学院創造理工学研究科総合機械工学専攻 独立行政法人日本学術振興会 独立行政法人宇宙航空研究開発機構
  • 田中 義久
    独立行政法人物質・材料研究機構
  • 吉田 誠
    早稲田大学各務記念材料技術研究所
  • 堀部 進
    早稲田大学大学院創造理工学研究科総合機械工学専攻

書誌事項

タイトル別名
  • Effect of Twinning and Aging Treatment on Fatigue Process of ZK60 Magnesium Alloys
  • マグネシウム ゴウキン ZK60 ノ ヒロウ カテイ ニ オヨボス ソウショウヘンケイ ト ジコウ ノ エイキョウ

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抄録

  For magnesium alloy ZK60 with different heat treatments, controlled plastic strain amplitude fatigue tests were conducted. Effects of twinning and aging treatments on fatigue process were investigated by analyzing the second derivative of hysteresis half-loop. It is found that during compression the convex peak appears at the strain where twinning begins. It is also found that during tension the convex peak appears at the strain where detwinning begins and the concave peak appears at the strain where slip begins to be predominant. Analyzing the strain at the convex peak in compression at the plastic strain amplitude of 6×10−3, for solution treated material and over-aged material twinning hardens with increasing cycle. On the other hand, for T6 material twinning softens from 5 cycle to Nf/5 cycle and then hardens from Nf/5 cycle to Nf/2 cycle. It was suggested that residual twins cause twinning hardening. It was also suggested that cut and dissolution of rod-like precipitates should cause twinning softening. Due to different states of precipitates of materials, the twinning softening appeared for only T6 material at the plastic strain amplitude of 6×10−3. Moreover, the softening were not found for T6 material under the plastic strain amplitude of 4×10−3.<br>

収録刊行物

  • 日本金属学会誌

    日本金属学会誌 77 (10), 448-454, 2013

    公益社団法人 日本金属学会

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