Effect of ausforming and cooling rate on the distribution of high angle boundaries in low carbon bainitic structure
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摘要: 使用電子背散射衍射技術研究了低C高Mn高Nb成分設計下,非再結晶奧氏體變形及加速冷卻速率對低碳貝氏體組織取向差特征和大角晶界分布的影響.結果表明,與原奧氏體晶粒內部的相變組織相比,原奧氏體晶界附近具有更高的大角晶界密度,非再結晶區奧氏體變形及快速冷卻都有利于提高共格相變的驅動力、弱化變體選擇以及有效增加大角晶界密度.此外,非再結晶區的大變形除了可充分壓扁奧氏體晶粒和增加單位面積的奧氏體晶界密度外,還導致奧氏體晶界上細小的非共格轉變鐵素體晶粒生成,且這些鐵素體晶粒與相鄰組織表現出大取向差.Abstract: High Mn-high Nb micro-alloyed steels were investigated by electron back-scattering diffraction (EBSD) to determine the effect of cooling rate and ausforming on the characteristic of misorientation and the distribution of high angle boundaries (HABs) in low carbon bainitic microstructure. The results indicate that there is a dispersion of HABs interspacing from prior austenite grain boundaries to the grain interior. Both fast cooling and ausforming raise the drive force of coherent transformation, weaken variants selection, and are helpful for the increasing of HABs density near the boundaries and in the grains. Moreover, a larger deformation below the non-recrystallization temperature not only can flatten the austenite grains fully, but also can generate incoherent nucleation of fine ferrite grains at the prior austenite boundaries. Also the fine ferrite grains have significant misorientations with adjacent microstructure.
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Key words:
- pipeline steel /
- grain boundaries /
- cooling /
- ausforming /
- bainite
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