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GH720Li合金γ+γ'兩相區再結晶行為

Recrystallization behavior of GH720 Li alloy in the γ+γ'bi-model phase region

  • 摘要: 利用金相顯微鏡、掃描電鏡、透射電鏡等手段分析了GH720Li合金在兩相區熱壓縮后的變形空冷態及退火態組織特征,探討了該合金的靜態再結晶機制.發現GH720Li合金在1100℃熱變形及其后的空冷過程中主要發生回復現象,僅有少數再結晶晶粒可通過亞晶合并和亞晶長大的方式形核并長大;大量γ'相的限制使再結晶過程只能局限于單個或幾個晶粒內.經不同時間退火后,再結晶可開動應變誘導晶界遷移及多個晶粒交界處的位錯塞積區形核等機制,但一次γ'相的存在抑制了合金的整體再結晶進程.在基體變形及再結晶過程進行的同時,合金中一次γ'相也能夠參與變形過程并發生一定程度的回復及再結晶現象.

     

    Abstract: The microstructure characteristics and recrystallization mechanism of GH720Li alloy deformed in the bi-model phase region and then air cooled or annealed were investigated by metalloscopy, scanning electron microscopy and transmission electron microscopy. It is found that the main softening mechanism after hot deformation at 1100℃ and air cooling is recovery and recrystallization occurs only in a limited portion of grains with the subgrain growth and merging mechanism due to a great content of gamma prime phase in the alloy. During the annealing process, the nucleation of static recrystallization may occur in dislocation pile-up areas located at the juncture of several grains or by strain-induced boundary migration (SIBM) but the whole recrystallizing process is restrained by the retained percentage of primary gamma prime phase. It must be pointed that the retained primary gamma prime phase in GH720Li can also be somewhat deformed during hot working and then also softened to some extent by recovery and recrystallization during the annealing process.

     

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