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The effect of 3D and 2D deformations on flattened wires

机译:3D和2D变形对扁平导线的影响

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摘要

To investigate the effect of 3D and 2D deformations on flattened wires, the effective strain fields of flat rolled and sidepressed wires are predicted using the combined finite and slab element method (FSEM) and two-dimensional finite element method (TDFEM), respectively. The validity of the calculated strain fields are verified using the Vickers microhardness test. Utilizing the calculated strain fields, the strain inhomogeneity of the flat rolled and sidepressed wires are investigated. To assess the effects of height to width ratio and fric-tional condition on the strain inhomogeneity, an inhomogeneity factor (IF) is defined. The results show that for both the flat rolled and sidepressed wires the strain inhomogeneity is increased with increasing the height to width ratio and friction factor. Moreover, for a specific height to width ratio and frictional condition, the strain inhomogeneity of flat rolled wire is lower than that of sidepressed wire.
机译:为了研究3D和2D变形对扁钢的影响,分别使用有限元和板坯元素方法(FSEM)和二维有限元方法(TDFEM)来预测扁轧和侧压钢丝的有效应变场。使用维氏显微硬度测试验证了计算出的应变场的有效性。利用计算得到的应变场,研究了扁轧和侧压钢丝的应变不均匀性。为了评估高宽比和摩擦条件对应变不均匀性的影响,定义了不均匀性因子(IF)。结果表明,对于扁轧线和侧压线,应变不均匀性随高宽比和摩擦系数的增加而增加。而且,对于特定的高宽比和摩擦条件,扁轧线的应变不均匀性低于侧压线的应变不均匀性。

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