Evolution and thermal stability of bainite in a low-carbon steel during reheating below A_1 temperature
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摘要: 通過原位追蹤金相觀察、維氏硬度測試、透射電子顯微術、電子背散射衍射等實驗手段研究了低碳鋼中貝氏體組織在550~675℃范圍內重加熱過程中的演化與熱穩定性.實驗結果表明:貝氏體組織通過回復與再結晶方式演化為多邊形鐵素體,在該過程中粒狀貝氏體首先演化為多邊形鐵素體,然后多邊形鐵素體再吞噬貝氏體鐵素體,貝氏體鐵素體表現出了高于粒狀貝氏體的熱穩定性;在回復過程中,貝氏體鐵素體中相鄰鐵素體板條之間的小角度晶界部分撤除,鐵素體板條發生傾轉與合并;貝氏體組織在重加熱過程中的演化存在一個穩定階段,處于回復與再結晶之間,其持續時間隨溫度的降低而顯著延長.Abstract: In-situ tracing metallographic observation, Vickers hardness test, transmission electron microscopy and electron back-scattered diffraction were carried out to investigate the evolution and thermal stability of bainite in a low-carbon steel during reheating in a temperature range of 550 to 675℃. Experimental results show that the bainite evolves into polygonal ferrite through the way of recovery and recrystallization. In this process the granular bainite changes into polygonal ferrite firstly and then the polygonal ferrite consumes bainitic ferrite, so the bainitic ferrite exhibits a higher thermal stability than the granular bainite. During recovery, low degree boundaries between adjoining ferrite laths are partially removed, and the ferrite laths are tilted and merged. There is an evolutionary stable stage between recovery and recrystallization during reheating of bainite, and the duration of the stable stage is significantly prolonged with the drop of temperature.
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Key words:
- low carbon steel /
- bainite /
- heat treatment /
- microstructural evolution /
- thermal stability
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