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Effect of reduction ratio, inclusion size and distance between inclusions on wire breaks in Cu fine wiredrawing

机译:压下率,夹杂物尺寸和夹杂物之间的距离对铜细拉丝断线的影响

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The presence of an inclusion in wire makes wire breaks easy to occur even with a high reduction ratio. The investigation presented here is mainly aimed at determining the reduction ratio when size of an inclusion, application of back tension and distance between inclusions are considered. In order to investigate the effect of back tension on wire breaks, the applied hack tension in a slip type continuous drawing machine is calculated quantitatively using some parameters such as diameter and peripheral speed of capstan and coiling number. The effect of an inclusion size and reduction ratio on wire breaks is investigated when quantitatively calculated back tension being 28 percent of drawing force is applied. The size of an inclusion varies 5, 7 and 10 mu m, the reduction ratio varies 10, 13 and 16 percent, the distance between inclusions is set to be 0.25 and 0.5 mm, respectively. Conical dies with a half angle alpha of 7 deg, which is the value generally used in commercial production. As the FEM code, the commercially available software DEFORM-2D is used. Copper is used for fine wire drawing process that initial diameter is 1 mm and final diameter is up to 50 mu m. Accumulated strain and mean stress are simultaneously calculated to obtain damage value in the multistage wiredrawing. The defects of central burst type are generated at a smaller total reduction ratio with decreasing unit reduction ratio and with increasing inclusion size Furthermore, damage value rises because the tensile stress in deformation zone increases by applied back tension. The distance between inclusions would not affect wire breaks because the distance is expanded excessively through multistage wiredrawing.
机译:焊丝中夹杂物的存在使得即使高缩径率也容易发生断线。此处介绍的研究主要旨在确定夹杂物尺寸,施加背张力和夹杂物之间的距离时的压下率。为了研究背张力对断线的影响,使用一些参数,例如绞盘的直径和圆周速度以及卷取数,定量地计算了滑移式连续拉伸机中施加的劈刀张力。当定量地施加拉力为拉拔力的28%时,研究夹杂物尺寸和压下率对断丝的影响。夹杂物的尺寸变化为5、7和10μm,减小率变化为10、13和16%,夹杂物之间的距离分别设置为0.25和0.5mm。具有7度半角α的圆锥形模具,这是商业生产中通常使用的值。作为FEM代码,使用可商购的软件DEFORM-2D。铜用于细拉丝工艺,其初始直径为1 mm,最终直径最大为50μm。同时计算累积的应变和平均应力,以获得多级拉丝时的损伤值。随着单位压下率的减小和夹杂物尺寸的增大,以总压下率较小的方式产生中心爆裂型缺陷。此外,由于变形区中的拉应力由于施加的反张力而增加,因此损伤值增大。夹杂物之间的距离不会影响断线,因为该距离会通过多阶段拉丝而过度扩展。

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