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Effect of strain rate on metal flow pattern in T-section extrusion process

机译:T形挤压过程中应变速率对金属流型的影响

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Extrusion is a deformation process used in metal sections fabrication. Metal flow pattern during extrusion process is of great importance. How circular initial section of billet changes to final section provides more details of extrusion process, and plays an important role in optimizing the extrusion energy. Extrusion in flat-faced die, without intermediate section, needs much more energy than is required for die having intermediate section. The aim of this study was to investigate the effect of strain rate on metal flow pattern in T-section extrusion process. Four different ram speeds were applied to realize how the shape and position of intermediate section would be affected. Flat-faced die with "T" final section was designed and manufactured. Straight layout of metal was of top concern in die design. Commercial purity aluminum, Al 99.5, was extruded in flat-faced die in hot condition. Graphite was used as lubricant in deformation process. After partial extrusion of billets, the residual part of billets pounced out of container and then mounted for metallographic tests. This part of billets consisted of dead-metal zone and deformation zone. Then, step-by-step decreasing of specimen height followed by macro-etching of metal surface paved the way for determining the metal flow pattern. An egg-shaped intermediate section appeared between initial round section and final "T" section. The size and position of the intermediate section changed by varying the strain rate of extrusion process; It was also revealed that as the strain rate of extrusion process is increased, the dead-metal zones become narrower and the dead-metal zone semi angle increases.
机译:挤压是用于金属型材制造的变形过程。挤压过程中的金属流型非常重要。坯料的圆形起始部分到最终部分的变化如何提供更多的挤出过程细节,并在优化挤出能量方面发挥重要作用。没有中间部分的平面模具中的挤出比具有中间部分的模具需要更多的能量。这项研究的目的是研究在T型截面挤压工艺中应变速率对金属流型的影响。应用了四种不同的冲头速度来实现中间段形状和位置的变化。设计并制造了最终截面为“ T”的平面模具。在模具设计中,金属的直接布局是最重要的问题。将商品级纯铝Al 99.5在热条件下挤出到平面模具中。石墨在变形过程中用作润滑剂。将钢坯部分挤出后,将钢坯的剩余部分从容器中弹出,然后安装进行金相测试。这部分坯料由废金属区和变形区组成。然后,逐步降低样品高度,然后对金属表面进行宏观蚀刻,为确定金属流型铺平了道路。在最初的圆形部分和最后的“ T”部分之间出现了一个蛋形的中间部分。中间部分的大小和位置通过改变挤压过程的应变率而改变;还显示出,随着挤压过程的应变速率增加,死金属区变窄并且死金属区半角增大。

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