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Deformation-induced martensitic transformation and workhardening of type 304 stainless steel sheet during draw-bending

机译:在拉伸弯曲期间,变形诱导的马氏体转化和304型不锈钢板的高压

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Deformation-induced martensitic transformation and workhardening behavior in draw bending process was investigated, on a Type 304 stainless steel sheet, in comparison with that in uniaxial tension experiment. The Vickers hardness of the draw-bent sheet at the surface is much larger than that at the mid-plane, and it becomes remarkably larger with increasing blank holder force. The significant increase of hardness in the deformed sheet is due to a'-martensitic transformation. The volume fraction of a'-martensite in the draw-bent sheet is smaller than that in the uniaxially pulled sheet with the same plastic strain. In uniaxial tension the sheet is plastically deformed in one direction monotonically, but in contrast, in draw-bending tension-to-compression (i.e., bending-to-unbending) deformation takes place when the sheet is drawn over the die-corner. The difference in the evolution of the martensite between draw-bending and uniaxial tension is explained from such a difference in deformation mode.
机译:研究了在304型不锈钢板上研究了绘制弯曲过程中的变形诱导的马氏体转化和高压行为,与单轴张力实验相比。在表面上的拉伸板的维氏硬度远大于中平面的长度,并且随着坯料支架力的增加变大。变形板中硬度的显着增加是由于A'-马氏体转化。拉伸板中A'-马氏体的体积分数小于具有相同塑性菌株的单轴拉动片中的。在单轴张力中,片材在一个方向上单调地塑性变形,但相反,在拉伸弯曲的张力 - 压缩(即,弯曲到不均平)时发生,当纸张在模具角上绘制时发生。从这种变形模式的差异解释了脱脂和单轴张力之间的马氏体之间的差异。

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