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Development of ultrafine grains in C-Mn steel plates through hot-rolling and air-cooling

机译:通过热轧和空冷技术开发C-Mn钢板中的超细晶粒

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摘要

Ultrafine grained steel (grain size 2-3 μm) that has a numerous futuristic applications in automobile and engineering industry has been developed in laboratory scale with plain C-Mn and C-Mn-Nb, C-Mn-V compositions. Three heats (25 kg each) of different chemistries were made in a laboratory induction furnace and hot-rolled into 20 mm thick plates initially in a 2 high/4 high experimental rolling mill. Dilatometry was carried out to determine the transformation temperatures. Subsequently, hot-compression tests were performed in a thermo-mechanical simulator with designed parameters and optimum processing window for obtaining fine and uniform through-thickness ferrite grains. The experimental steels were further hot-rolled to 4 mm plates in 3 passes and then air-cooled. Optical microscopy, SEM and TEM studies confirmed the presence of uniform through-thickness ultrafine ferrite grains in the range of 2.5-3.5 μm in the experimental steels. Both tensile and Charpy impact toughness properties were found to be good in these steels. Yield strength of 422 MPa, 472 MPa and 594 MPa with 22-23% elongation could be achieved in plain C-Mn, C-Mn-Nb and C-Mn-V steels respectively. Charpy V-notch energies of these steels were 44 J, 68 J and 44 J at -20 ℃ respectively. Uniform through-thickness ultrafine grains resulted in the substantial improvement of strength and toughness of the experimental steels.
机译:已在实验室规模开发了具有普通C-Mn和C-Mn-Nb,C-Mn-V成分的超细晶粒钢(晶粒尺寸2-3μm),在汽车和工程行业中具有广泛的未来应用。在实验室感应炉中进行三种化学性质的加热(各25千克),首先在2高/ 4高实验轧机中热轧成20毫米厚的板。进行膨胀计以确定转变温度。随后,在热机械模拟器中进行热压试验,以设计的参数和最佳的加工窗口来获得细而均匀的全厚度铁素体晶粒。在3道次中将实验钢进一步热轧至4 mm钢板,然后进行空气冷却。光学显微镜,SEM和TEM研究证实,实验钢中存在厚度范围为2.5-3.5μm的均匀厚度的超细铁素体晶粒。发现这些钢的拉伸和夏比冲击韧性均良好。普通C-Mn,C-Mn-Nb和C-Mn-V钢的屈服强度分别为422 MPa,472 MPa和594 MPa,伸长率为22-23%。在-20℃时,这些钢的夏比V型缺口能量分别为44 J,68 J和44J。厚度均匀的超细晶粒导致实验钢的强度和韧性得到实质性的提高。

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