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Effect of Si on Mechanical Property of Galvannealed Dual Phase Steel

机译:Si对镀锌双相钢力学性能的影响

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The mechanical properties of galvannealed dual phase steels bearing Si were investigated, and then the effect of Si on work hardening behavior during tensile deformation was discussed. Both tensile strength and yield strength were increased with increasing Si content, especially increasing ratio of tensile strength was larger than that of yield strength. On the other hand, the decrease of uniform elongation was very small with increasing Si content. Therefore, tensile strength and total elongation balance was improved by Si addition. High Si (1.2%Si) steel exhibited higher work hardening rate than low Si (0.01%Si) steel in all strain region. Dislocation cell structures were observed at 8% tensile strain in low Si steel, while dislocation cell structures were scarcely observed and instead, tangled dislocations were dominantly observed in high Si steel. Furthermore, high Si steel exhibited higher the increasing ratio of dislocation density in ferrite during tensile deformation than low Si steel. These results indicated that the formation of dislocation cell structure was retarded by Si addition, which led to the increase of work hardening rate and resulted in the improvement of tensile strength and total elongation balance.
机译:探测了轴承Si的镀锌双相钢的机械性能,然后讨论了Si对拉伸变形期间的工作硬化行为的影响。随着Si含量的增加而增加,抗拉强度和屈服强度均增加,尤其是拉伸强度的比率大于屈服强度。另一方面,随着Si含量增加,均匀伸长率的降低非常小。因此,通过加法提高了拉伸强度和总伸长率平衡。高Si(1.2%Si)钢在所有应变区中表现出高于低Si(0.01%Si)钢的工作硬化率。在低Si钢中以8%拉伸菌株观察到位错细胞结构,而脱位细胞结构几乎没有观察,而是在高Si钢中蒙上缠结的脱位。此外,在拉伸变形期间,高Si钢在抗拉钢期间表现出铁氧体中位错密度的增加率越来越高。这些结果表明,Si加法延迟了位错细胞结构的形成,其导致工作加固率的增加,导致拉伸强度和总伸长平衡的提高。

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