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A novel application of sideways extrusion to produce curved aluminium profiles: Feasibility study

机译:侧荫挤出应用弯曲铝型材的新颖应用:可行性研究

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Conventional curved aluminium alloy profile forming methods which depend on apparatus, additional to extrusion tooling, to bend extruded, straight sections inevitably decrease manufacturing efficiency and have to deal with springback and cross-sectional distortion. In this article, a novel energy-efficient forming method based on internal differential material flow, differential velocity sideways extrusion (DVSE), is proposed, which can directly form billets into curved profiles/sections by extrusion alone, using two opposing punches. A detailed study has been conducted and cold extrusion/bending of round bars and tubes was examined. It was found that curved profiles/sections with no distortion are formed, and adjustable profile curvature can be achieved by changing the velocity ratio of a slower lower punch to a faster upper punch and also extrusion ratio. Lower velocity ratio and larger extrusion ratio tend to increase the material flow velocity gradient at the die exit and lead to greater curvature. Effect of velocity ratio is greater than that of extrusion ratio, especially when velocity ratio is less than 1/3. Effect of the extrusion ratio is small when velocity ratio is greater than 0.5, after which the effect of extrusion ratio becomes more significant as velocity ratio decreases.
机译:常规弯曲铝合金轮廓成形方法依赖于设备,附加到挤出工具,弯曲挤压,直线部分不可避免地降低制造效率,并且必须处理回弹和横截面失真。在本文中,提出了一种基于内部差动材料流动的新型节能成型方法,差速速度侧向挤出(DVSE),其可以使用两个相对的冲头单独通过挤出直接形成钢板/部分。已经进行了详细的研究,并检查了圆形条和管的冷挤出/弯曲。发现没有形成具有失真的弯曲曲线/部分,并且可以通过将较慢的下冲孔的速度比改变为更快的上冲头以及挤出比来实现可调节的轮廓曲率。较低的速度比和较大的挤出比倾向于增加模具出口处的材料流速梯度并导致更大的曲率。速度比的影响大于挤出比,特别是当速度比小于1/3时。当速度比大于0.5时,挤出比的效果很小,之后挤出比的效果随速度比变得更显着。

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