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Effect of Ti Addition on Mixed Microstructure of Allotriomorphic and Bainitic Ferrite in Wrought C-Mn Steels

机译:Ti添加对锻造C-MN钢中同种异体和贝氏体铁素质混合微观结构的影响

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The influence of Ti addition on the microstructure of hot-deformed C-Mn steel has been investigated. The C-Mn steels of 0.1 and 0.15 wt% C have been deformed at different temperatures and cooled at various rates. The small addition of Ti induces a reduction in the prior austenite grain size (PAGS) and an increase in the non-recrystallization temperature of deformed austenite grains. The addition of Ti also modifies the bainitic ferrite microstructure by intragranular nucleation on Ti_2O_3 inclusions. For relatively coarse austenite grains of about 60 μm, the microstructure mainly consisting of acicular ferrite is developed at appropriate cooling rates according to the hardenability. A mixture of very small packets of bainite and acicular ferrite is obtained for fine austenite grains of about 30 μm. For unrecrystallized austenite grains, the cooling rates similar to those of the. recrystallized austenite grains of 6 μm are appropriate to get the positive effects of the Ti addition.
机译:研究了Ti添加对热变形的C-Mn钢微观结构的影响。 0.1和0.15wt%C的C-Mn钢在不同的温度下变形并以各种速率冷却。少量添加Ti诱导预奥氏体晶粒尺寸(PAG)的降低,以及变形奥氏体晶粒的非再结晶温度的增加。通过Ti_2O_3夹杂物上的腔内成核,添加Ti还通过腔内成核来改变贝氏体铁氧体微观结构。对于约60μm的相对粗奥氏体晶粒,主要由针状铁氧体组成的微观结构在适当的冷却速率下根据淬透性开发。获得非常小的贝氏体和针状铁素体的混合物,用于细小奥氏体晶粒,约为30μm。对于未结晶的奥氏体晶粒,冷却速率类似于那些。重结晶奥氏体晶粒为6μm是合适的,以获得加法的积极效果。

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