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Influence of the relative rotational speed on component features in micro rotary swaging

机译:相对旋转速度对微旋转锻造中零件特征的影响

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Micro rotary swaging is a cold forming process for production of micro components with determined geometry and surface. It is also possible to change the microstructure of wires and hence the material properties. Swaging dies revolve around the work piece with an overlaid radial oscillation. Newly developed tools (Flat Surface Dies, FSD) feature plain surfaces and do not represent the geometry of the formed part as in conventional swaging. Using these tools allows for producing wires with triangle geometry (cross section) as well as a circular shape. To test the influence of FSD on material properties by micro swaging a new method is investigated: the variation of the relative speed between the specimen and dies in infeed rotary swaging. During this specific process copper (C11000) and steel (304 Alloy) wires with diameter d0 = 1 mm are formed. It is noticed that the mechanical characteristics such as ductility and strength differ from the characteristics after conventional swaging. Moreover this approach enables new possibilities to influence the geometry and the surface quality of wires. The impact of the relative speed on the processed wire features is described in this paper.
机译:微旋转锻造是一种冷成型工艺,用于生产具有确定几何形状和表面的微组件。也可以改变导线的微观结构,从而改变材料性能。模锻模具绕着工件旋转,并带有叠加的径向振动。新开发的工具(平面模具,FSD)具有平坦的表面,不像传统型锻中那样代表成形零件的几何形状。使用这些工具可以生产具有三角形几何形状(横截面)以及圆形的电线。为了通过微模锻测试FSD对材料性能的影响,研究了一种新方法:进料旋转模锻中样品与模具之间的相对速度变化。在此特定过程中,形成直径为d0 = 1 mm的铜(C11000)和钢(304合金)线。注意,诸如延展性和强度之类的机械特性不同于常规型锻后的特性。此外,这种方法使人们有新的可能性来影响电线的几何形状和表面质量。本文描述了相对速度对加工后的导线特征的影响。

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