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Microstructure and mechanical properties of C-Si-Mn(-Nb) TRIP steels after simulated thermomechanical processing

机译:模拟热机械加工后的C-Si-Mn(-Nb)TRIP钢的组织和力学性能

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摘要

Continuous and discontinuous cooling tests were performed using a quench deformation dilatometer to develop a comprehensive understanding of the structural and kinetic aspects of the bainite transformation in low carbon TRIP (transformation induced plasticity) steels as a function of thermomechanical processing and composition. Deformation in the unrecrystallised austenite region refined the ferrite grain size and increased the ferrite and bainite transformation temperatures for cooling rates from 10 to 90 K s~(9-1) The influence of niobium on the transformation kinetics was also investigated. Niobium increases the ferrite start transformation temperature, refines the ferrite microstructure, and stimulates the formation of acicular ferrite. The effect of the bainite isothermal transformation temperature on the final microstructure of steels with and without a small addition of niobium was studied. Niobium promotes the formation of stable retained austenite, which influences the mechanical properties of TRIP steels. The optimum mechanical properties were obtained after isothermal holding at 400 deg C in the niobium steel containing the maximum volume fraction of retained austenite with acicular ferrite as the predominant second phase.
机译:使用淬火变形膨胀计进行了连续和不连续的冷却测试,以全面了解低碳TRIP(相变诱导塑性)钢中贝氏体相变的结构和动力学方面,作为热机械加工和成分的函数。在冷却速率从10 Ks〜(9-1)的范围内,未再结晶奥氏体区域的变形细化了铁素体晶粒尺寸,并使铁素体和贝氏体转变温度提高了。研究了铌对转变动力学的影响。铌提高了铁素体的开始转变温度,细化了铁素体的微观结构,并刺激了针状铁素体的形成。研究了贝氏体等温转变温度对添加和不添加少量铌的钢最终组织的影响。铌促进稳定的残余奥氏体的形成,这会影响TRIP钢的机械性能。在含有最大体积分数的残余奥氏体且以针状铁素体为主要第二相的铌钢中于400℃等温保温后,可获得最佳的机械性能。

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