Thermo-Stability of Fine Non-Equilibrium Microstructure in Low Carbon Steel
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摘要: 研究了同一成分的鋼經過弛豫-析出控制相變RPC和再加熱淬火RQ兩種工藝處理后在500到700℃同火過程中組織與性能的演變.經過RPC處理后的鋼板隨回火溫度的升高硬度降低不明顯.在600到650℃溫度回火時硬度還有所回升:經過RQ處理后的鋼板同火前硬度雖然較低,但軟化速度非常快.回火前兩種鋼板組織均為貝氏體和馬氏體的復合組織,經RPC處理后的鋼板隨回火溫度的提高組織沒有明顯變化,只是一些板條出現合并現象,而經過RQ處理后的鋼板隨回火溫度的升高板條很快消失最終演變成多邊形鐵素體,硬度也隨之大幅度下降.以上結果表明微細非平衡組織的熱穩定性與其熱歷史密切相關.Abstract: The evolution of microstructure and hardness of low carbon plate steel during tempering at 500-700℃ was investigated. The steel was manufactured by RFC (Relaxation-Precipitation Controlling phase transformation) technique. A part of the plate was reheated to 930℃ and held for 1 h before quenched into water (RQ) as a comparison. RFC plate softened slowly with the increase of tempering temperature and even became harder between 600 and 650℃. Despite of a lower original hardness of RQ plate it softened faster during tempering. RPC steel and RQ steel are constituted by bainite and martensite microstructures before tempering. The microstructure of RFC steel did not change obviously except some bainitic laths coalescing were detected by means of SEM during tempering, while the boundary of bainitic laths of RQ steel disappeared quickly and finally formed polygonal ferrite forms accompanied a dramatic decrease in hardness. These results indicate that the thermo-stability of fine non-equilibrium microstructure is tightly related to their history.
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Key words:
- microalloyed steel /
- bainite and martensite /
- tempering
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