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形變Al-Fe-Mn鋁合金的再結晶激活能研究

Research on recrystallization activation energy of deformed Al-Fe-Mn aluminum alloy

  • 摘要: 將一種自主研發Al-Fe-Mn鋁合金進行熱軋和冷軋至2 mm,然後將軋板加熱到340~400 ℃進行等溫退火,通過比較不同退火溫度和保溫時間條件下的鋁合金板的硬度變化,並結合金相組織檢驗,確定了該合金的定時條件下的再結晶溫度以及恒溫條件下的再結晶時間❕。通過Arrhenius公式計算了試驗鋼的再結晶激活能❤️。試驗結果表明,當退火溫度為340 ℃時,再結晶發生時間為13 min👮🏻‍♂️;當退火溫度提高360 ℃時,再結晶時間縮短到8 min◀️;而當退火溫度進一步提高到380 ℃,再結晶在3 min時發生➗。再結晶激活能Q為115.9 kJ/mol。

     

    Abstract: A self-developed Al-Fe-Mn aluminum alloy sheet was hot-rolled and cold-rolled to 2 mm, and then isothermal annealing was carried out by heating the sheet to 340-400 ℃. By comparing the hardness variation of aluminum alloy sheets under different annealing temperatures and holding time conditions, and combining with metallographic examination, the temperature and time of recrystallization transition under certain holding time and constant temperature were determined. The recrystallization activation energy of the sheet was calculated through Arrhenius formula. The results have revealed that the recrystallization time is 13 minutes when the annealing temperature is 340 ℃, and the recrystallization time is reduced to 8 minutes when the temperature is increased to 360 ℃. The recrystallization occurs in 3 minutes when the temperature is further increased to 380 ℃. It is found that the calculated recrystallization activation energy is 115.9 kJ/mol.

     

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