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Study on Bainitic Transformation by Dilatometer and In Situ LSCM

机译:膨胀计和原位LSCM对贝氏体转变的研究

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摘要

This study investigates the bainitic transformation kinetics of carbide-free bainitic steel with Si + Al and carbide-bearing bainitic steel without Si + Al, as well as the phase transformation and microstructure through in situ high-temperature laser scanning confocal microscopy. Results show that bainitic ferrite plates preferentially nucleate at the grain boundary. New plates nucleate on previously formed ones, including two dimensions which appear on a plane where a three-dimensional space of bainitic ferrite forms. Nucleation on the formed bainitic ferrite is faster than that at the grain boundary in some grains. The bainitic ferrite growth at the austenite grain boundary is longer and has a faster transformation rate. The bainitic ferrite growth on the formed bainitic ferrite plate is shorter and has a slower transformation rate. The location and number of nucleation sites influence the thickness of the bainitic ferrite. The higher the number of plates preferentially nucleating at the original austenite grain boundary, the greater the thickness of the bainitic ferrite.
机译:本研究通过原位高温激光扫描共聚焦显微镜研究了含Si + Al的无碳化物贝氏体钢和不含Si + Al的含碳化物贝氏体钢的贝氏体转变动力学,以及相变和组织。结果表明,贝氏体铁素体板在晶界优先成核。新的板在先前形成的板上成核,包括在出现贝氏体铁素体三维空间的平面上出现的二维。在某些晶粒中,形成的贝氏体铁素体上的成核速度快于晶界处的成核速度。在奥氏体晶界的贝氏体铁素体生长更长,并且具有更快的转变速率。在所形成的贝氏体铁素体板上的贝氏体铁素体生长更短并且具有较慢的转变速率。成核位置和数量会影响贝氏体铁素体的厚度。在原始奥氏体晶界处优先成核的板数越高,贝氏体铁素体的厚度越大。

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