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Microstructures and mechanical properties of ultra low carbon IF steel processed by accumulative roll bonding process

机译:累积轧制工艺处理超低碳IF钢的组织和力学性能

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摘要

An ultra low carbon IF steel was severely strained by accumulative roll-bonding (ARB) process and subsequently annealed for 0.5 h at various temperatures ranging from 673 to 1073 K for strengthening by grain refinement. The ARB process was carried out up to 5 cycles (an apparent equivalent strain of 4.0) at ambient temperature without lubrication. The as-ARBed specimen exhibited a dislocation cell structure with relatively high dislocation density, rather than a well-defined ultrafine grained structure. However, the subsequent annealing at 673 or 773 K resulted in the formation of ultrafine grains in the structure. This indicates that the heating (recovery) is necessary for the formation of ultrafine grains in the present IF steel severely deformed by ARB process. The tensile strength of the as-ARB processed IF steel increased with strain, reached a maximum of 813 MPa, which is about 3 times higher than the initial value. The elongation dropped largely from 60 to below 10% at the 1st cycle, but it hardly changed from the 2nd cycle even if the ARB cycle increased. The strength decreased gradually and the elongation increased with annealing temperature. Changes in the mechanical properties with the annealing temperatures corresponded well with the changes in the microstructures.
机译:超低碳IF钢通过累积轧制(ARB)工艺严重变形,随后在673至1073 K的各种温度下退火0.5小时,以通过晶粒细化进行强化。 ARB工艺在环境温度下最多进行5个循环(表观等效应变为4.0),而不进行润滑。 As-ARBed样品表现出位错密度较高的位错细胞结构,而不是定义明确的超细晶粒结构。但是,随后在673或773 K处退火导致在结构中形成超细晶粒。这表明在通过ARB工艺严重变形的本IF钢中形成超细晶粒所需的加热(恢复)。经as-ARB处理的IF钢的抗拉强度随应变而增加,最大达到813 MPa,约为初始值的3倍。伸长率在第一个循环中从60%大幅下降至10%以下,但即使ARB循环增加,也几乎不会从第二个循环变化。随着退火温度的增加,强度逐渐降低,伸长率增加。力学性能随退火温度的变化与微观结构的变化非常吻合。

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