Influence of thermo-mechanical processing on aging precipitation of Fe-Cu alloys
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摘要: 對鐵銅合金分別進行50%和80%冷變形,利用金相顯微鏡以及高分辨投射電鏡研究形變熱處理過程中的微觀組織與沉淀析出,分析形變量對時效析出的影響.結果表明:變形有助于第二相的析出,大的冷變形量時沉淀相粒子形成的速率更快,所占體積分數更大.優先析出為富銅過渡相,這種富銅過渡相所形成的GP區對合金起強化作用,其后隨時效時間延長這種富銅相逐漸轉轉變成ε-Cu.Abstract: The aging precipitation of a Fe-Cu alloy cold-deformed 50% and 80% was studied. Optical microscope and HREM were employed to observe the microstructure and precipitation in thermo-mechanical processing, and the effect of cold deformation on the aging precipitation was analyzed. The results show that cold deformation is helpful to the precipitation of second phase, after a large quantity of cold deformation the precipitation is accelerated and the bulk volume of second phase becomes greater. Copper-rich transition phase is precipitated in advance and then transformed to ε-Cu phase with the increase of time during the overaging period. The copper-rich phase, i.e. GP zone, is the main cause to strengthen the alloy.
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Key words:
- Fe-Cu alloy /
- aging /
- thermo-mechanical processing /
- precipitation /
- GP zone
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