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Important factors to obtain homogeneous and ultrafine ferrite-pearlite microstructure in low carbon steel

机译:在低碳钢中获得均匀且超细的铁素体-珠光体组织的重要因素

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The microstructural evolutions during compressions at different temperatures and strains were investigated using a Gleeble-1500 test machine for a low carbon steel, with and without the formation of pre-eutectoid ferrite. The physical processes that occurred during heavy deformation were discussed by observing the microstructure and analyzing the true stress-true strain responses. The important factors to obtain the equiaxed, homogeneous and ultrafine ferrite, include the initial microstructure before deformation, the deformation temperature and the true strain imposed. The refinement mechanisms for attaining the ultrafine-grained ferrite were discussed in terms of the strain-assisted transformation (SAT) of austenite to ferrite and the dynamic recrystallization of ferrite. The adequate ferritic microstructure has been obtained by deforming the undercooling austenite with a sufficient strain in a reasonable temperature range. The SAT should preferentially be considered in obtaining the ultrafine ferrite because it occurs more easily than the dynamic recrystallization of ferrite. Decreasing the recovery rate of ferrite and increasing the defect concentration in austenite is beneficial to the formation of ultrafine ferrite.
机译:使用Gleeble-1500低碳钢试验机研究了在不同温度和应变下压缩过程中的微观组织演变,该试验机有无形成共析铁素体。通过观察微观结构并分析真实应力-真实应变响应,讨论了在大变形期间发生的物理过程。获得等轴,均匀和超细铁素体的重要因素包括变形前的初始显微组织,变形温度和施加的真实应变。从奥氏体向铁素体的应变辅助转变(SAT)和铁素体的动态再结晶方面,探讨了获得超细晶粒铁素体的细化机理。通过在合理的温度范围内以足够的应变使过冷奥氏体变形,可以获得足够的铁素体显微组织。在获得超细铁素体时,应优先考虑SAT,因为它比动态重结晶铁素体更容易发生。降低铁素体的回收率和增加奥氏体中的缺陷浓度有利于超细铁素体的形成。

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