首页> 外文会议>Conference of the European Scientific Association on Material Forming >DESIGN OF ROTARY EXTRUSION PROCESS USING SIMULATION TECHNIQUES TO SAVE RAW MATERIAL IN HOLLOW COMPONENTS
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DESIGN OF ROTARY EXTRUSION PROCESS USING SIMULATION TECHNIQUES TO SAVE RAW MATERIAL IN HOLLOW COMPONENTS

机译:仿真技术旋转挤出工艺的设计,以节省中空部件原料

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The forging process plays an important role in the automotive industry thanks to the good mechanical properties of the forged parts. Nowadays, due to the European policy of increasing efficiency in raw material and energy usage, the metal forming sector is demanding new innovative technologies. In this context, rotary extrusion technology is a very promising metal forming alternative to the drilling techniques after forging processes. The presented work is focused on hollow shafts that are usually manufactured using a combination of forming and metal cutting techniques. Deep drilling is the most common technique to obtain internal holes in the automotive hollow parts, but it is an expensive process in terms of material usage. In this framework, rotary extrusion appears as an alternative technology that leads to the reduction of material usage and process time. The tubular shape is formed with the combination of two forming processes: flow forming and backward extrusion.
机译:由于锻造部件的良好机械性能,锻造过程在汽车行业中起着重要作用。如今,由于欧洲的原料和能源使用效率的效率增加,金属成型部门要求新的创新技术。在这种情况下,旋转挤出技术是在锻造过程之后是钻井技术的非常有前途的金属形成替代方案。所提出的作品专注于空心轴,所述空心轴通常使用成型和金属切削技术的组合制造。深钻是在汽车中空零件中获得内部孔的最常见的技术,但它是一种昂贵的材料使用过程。在本框架中,旋转挤出显示为替代技术,导致材料使用和处理时间的减少。管状形状形成为两种成型工艺的组合:流动形成和后向挤出。

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