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ANALYTICAL METHODOLOGY FOR THE PROCESS AND JOINT DESIGN OF FORM-FIT JOINING BY DIE-LESS HYDROFORMING

机译:无水压模锻接头工艺及接头设计的分析方法

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In modern lightweight concepts, for example in automotive engineering, structures are increasingly composed of several dissimilar materials. Due to the different material properties of the joining partners, conventional and widely used joining techniques often reach their technological limits when applied in the manufacturing of such multi-material structures. This leads to an increasing demand for appropriate joining technologies, like joining by die-less hydroforming (DHF) for connecting tubular workpieces. The present work introduces an analytical model to determine the achievable joint strength of this connection type. This approach, taking into account the material parameters as well as the groove and tube geometry, is based on a membrane analysis with constant wall thickness. Additionally, bending stresses and friction are considered locally. Besides a fundamental understanding of the load transfer mechanism, this analytic approach allows a reliable joining zone design. To validate the model, experimental investigations using aluminum specimens were performed.
机译:在现代轻量化概念中,例如在汽车工程中,结构越来越多地由几种不同的材料组成。由于接合伙伴的材料特性不同,常规的和广泛使用的接合技术在应用于这种多材料结构的制造中时常常达到其技术极限。这导致对合适的连接技术的需求不断增长,例如通过无模液压成形(DHF)进行连接以连接管状工件。本工作介绍了一种分析模型,以确定此连接类型可实现的接头强度。考虑到材料参数以及凹槽和管的几何形状,该方法基于具有恒定壁厚的膜分析。另外,局部考虑弯曲应力和摩擦。除了对载荷传递机制有基本了解之外,这种分析方法还可以实现可靠的连接区域设计。为了验证模型,使用铝样品进行了实验研究。

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