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New die concept for self-pierce riveting materials with limited ductility

机译:具有有限延展性的自我皮肤铆接材料的新模具概念

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Lightweight materials, such as aluminum die castings, are used more and more for automotive applications. Due to the limited weldability, joining these materials by self-pierce riveting has been established. The challenge in this regard is that these materials, especially new high strength aluminum die castings, have a limited ductility, while the joining processes locally induce large plastic deformations. Consequently, joining by forming of these materials can be accompanied by cracks, which develop during the forming operation. This paper shows the experimental and numerical investigation of a new die concept for self-pierce riveting materials with limited ductility. At the new tool concept the riveting die is separated and a movable die element is used. This element allows that the parts are superimposed with compressive stresses during the self-pierce riveting process. In the paper it can be shown, that in contrast to the conventional process crack-free joints can be generated by using the new tool concept. Determination of the joining parameters and the die design was supported by simulative investigations. Additionally, the new and the conventional self-pierce riveting process are compared on the basis of results from the experimental investigations.
机译:为汽车应用越来越多地使用轻质材料,例如铝压铸件。由于可焊性有限,建立了通过自刺穿铆接连接这些材料。这方面的挑战是这些材料,尤其是新的高强度铝压铸件具有有限的延展性,而连接过程局部地诱导大塑性变形。因此,通过形成这些材料的连接可以伴随着在成形操作期间发生的裂缝。本文介绍了具有有限延展性的自刺刺铆接材料新模具概念的实验性和数值研究。在新工具概念,铆接模具被分离,并且使用可移动的模具元件。该元件允许部件在自皮铆接过程中叠加在压缩应力。在本文中,可以示出,与传统的工艺相比,可以通过使用新工具概念来产生无裂缝的关节。通过模拟研究支持连接参数和模具设计的确定。另外,在实验研究的结果的基础上比较了新的和传统的自刺刺铆接过程。

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