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Microstructural evolution and mechanical properties of V-containing medium-Mn steel manufactured via cold rolling and intercritical annealing

机译:通过冷轧和跨临界退火制造的含V型培养基钢的微观结构演化与力学性能

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V was added into a cold-rolled medium-Mn steel for optimizing comprehensive mechanical properties by the V-carbide precipitation. After annealing, the V-carbide particles in austenite grains easily coarsen than that in ferrite. The contributed yield strength increment of V-carbide precipitation strengthening in ferrite is in a range of 200–250 MPa. With increasing annealing temperature, the morphology of ferrite and austenite gradually transforms from lamellar to equiaxed. The sample after intercritical annealing at 650 °C shows 1450 MPa ultimate tensile strength, 1210 MPa yield strength, and 18% tensile elongation. In addition, samples with lamellar and equiaxed structures display larger Lüders plateaus than samples with a single equiaxed/lamellar structure. Partial martensitic transformation and continuous interactions between dislocation and twin are responsible for the Lüders plateau propagation. Therein, the number fraction of coarse austenite grains should be responsible for the propagation of Lüders plateau.
机译:v加入冷轧介质-MN钢中,通过V碳化物沉淀优化综合机械性能。退火后,奥氏体颗粒中的V碳化物颗粒容易粗糙,而不是铁氧体。铁素体中V碳化物沉淀强化的促成屈服强度增量在200-250MPa的范围内。随着退火温度的增加,铁氧体和奥氏体的形态逐渐从层状转变为等轴。在650℃下临界退火后的样品显示1450MPa的抗拉强度,1210MPa屈服强度和18%的拉伸伸长率。此外,具有层状和等式结构的样品比具有单个等式/层状结构的样品显示较大的LüdersPlateaus。偏离和双胞胎之间的部分马氏体转型和持续相互作用负责Lüders平台繁殖。其中,粗奥氏体颗粒的数量分数应负责Lüders高原的繁殖。

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