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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Advancements in the manufacturing of dies for hot aluminum extrusion with conformal cooling channels
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Advancements in the manufacturing of dies for hot aluminum extrusion with conformal cooling channels

机译:带有保形冷却通道的热铝挤压模具的制造进展

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摘要

To prevent an overheating of the workpiece material and to increase the productivity in hot aluminum extrusion, the application of extrusion dies with conformal cooling channels manufactured additively by selective laser melting is known. Since, to date, the additive manufacturing processes are often accompanied with higher manufacturing time and costs in comparison to conventional subtractive methods, a new concept for a hybrid extrusion die is presented. Here, the large volume but geometrically simple die part, the die bridge, is manufactured conventionally by subtractive methods, and the smaller part with geometrical complexity, the tip of the mandrel, is built-up on it additively by laser melting. A further novelty of the developed die is the isolated feeding of the coolant up to the target area, close to die bearings, where the cooling shall be localized. Numerical and experimental investigations revealed that the profile's exit temperature can be reduced locally and controlled which leads only to a moderate increase of the extrusion force. The experimental results show that the hybrid tools withstand the high mechanical and thermal loads which occur during hot aluminum extrusion.
机译:为了防止工件材料的过热并提高热铝挤压中的生产率,公知的是将挤压模具与通过选择性激光熔化相加制造的保形冷却通道一起使用。由于迄今为止,与传统的减法方法相比,增材制造工艺通常伴随着更高的制造时间和成本,因此提出了一种混合挤压模的新概念。在此,通常通过减法制造体积大但几何形状简单的模具零件,即模桥,而通过激光熔化将具有几何复杂性的较小零件,即心轴的尖端附加地堆积在其上。所开发模具的另一个新颖之处是,冷却剂被隔离地输送到目标区域,靠近模具轴承,在该区域应进行局部冷却。数值和实验研究表明,型材的出口温度可以局部降低和控制,这只会导致挤出力适度增加。实验结果表明,混合工具能够承受热铝挤压过程中产生的高机械和热负荷。

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