Influence of pre-deformation on the thermal stability of bainite in a microalioyed steel
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摘要: 采用光學金相、硬度測量結合透射電鏡觀察,研究了經過彎曲或扭轉變形的含鈮微合金鋼在等溫受熱時的組織穩定性問題.研究發現:彎曲與扭轉變形都可以大幅度提高微合金鋼的硬度;在隨后的550℃等溫受熱過程中,彎曲變形區的硬度迅速下降,同時伴隨貝氏體向平衡組織的演變;而扭轉區在等溫過程中的硬度始終高于未變形區,同時鋼中貝氏體組織基本得以保持.扭轉應變量越大,硬化效果越強,并且在隨后的等溫受熱過程中能保持這種硬度上的優勢.彎曲與扭轉變形均導致貝氏體板條內位錯密度顯著增加.彎曲變形區的位錯分布不均勻,其中的低位錯密度區易于在隨后的等溫受熱過程中演變為平衡組織多邊形鐵素體的形核核心;而扭轉變形區內位錯分布均勻,并且在隨后的等溫受熱過程中位錯分布不發生顯著改變.這些結果表明,不同的冷變形方式對微合金鋼中貝氏體熱穩定性的影響存在顯著差異.Abstract: Optical microscopy, hardness measurement and transmission electron microscopy (TEM) were employed to investigate the thermal stability of microstructures in a Nb-bearing microalloyed steel during isothermal holding, which had been curved or twisted before being heated. It is found that both curving and torsion increase the hardness of the microalloyed steel in a large scale. In subsequent isothermal holding at 550℃, the hardness of the zone subjected to curving drops rapidly in company with the evolution of bainite towards equilibrium microstructure while the hardness of the zone undergoing torsion is higher than that of the undeformed zone all the time and bainite remains in the zone. The larger the torsion degree is, the stronger the hardening effect is. The higher hardness can be preserved during isothermal holding. Both curving and torsion result in an obvious increase of dislocation density in bainite laths. Dislocations distribute inhomogeneously in the curved zone and polygonal ferrite tends to nucleating at sites with low dislocation density during subsequent heating, while dislocations distribute homogeneously in the twisted zone and do not markedly change the distribution during subsequent isothermal holding. These results indicate that different deformation methods produce different influences on the thermal stability of bainite in a microalloyed steel.
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Key words:
- microalloyed steel /
- predeformation /
- bainite /
- thermal stability
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