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Mechanical Joining Without Auxiliary Element by Cold Formed Pins for Multi-Material-Systems

机译:通过冷成型销的无辅元件的机械连接,用于多材料系统

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In order to achieve sustainable and resource-saving products, the use of intelligent lightweight design is a current trend. One approach is the implementation of multi-material systems. However, the joining technology poses a key challenge when combining different materials like continuous fibre-reinforced thermoplastic composites (CFRTP) and metal or joining steel and aluminium. Due to different material properties and partial chemical incompatibilities, established joining techniques without auxiliary element, like welding or clinching, are reaching their limits. Joining dissimilar materials through pin structures has proven as a possible strategy to produce hybrid multi-material systems on a laboratory scale. Nevertheless, this technology is hardly used in mass production due to the currently complex, uneconomical pin manufacturing process. In this work, cold forming is presented as a promising approach for the production of such pins. In a first step, the pins are extruded from a steel sheet (DC04). In a second step, the steel sheets are joined with aluminium (EN AW-6016) or CFRTP by either pressing pins directly into the material or by caulking pins with a pre-punched joining partner. The material for the pin is extruded directly from the sheet metal thus preventing additional weight in contrast to fasteners. In addition, the direct press-fit is a suitable method to achieve a tightly sealed joint. Within this work, the extrusion of the pin, as well as the two different joining operations, are investigated showing the fundamental applicability and the potential of the new joining process. In order to analyse the applicability of the joining operation shear tensile tests are conducted.
机译:为了实现可持续和资源节约的产品,使用智能轻质设计是目前的趋势。一种方法是实现多材料系统。然而,当相结合不同的材料如连续纤维增强的热塑性复合材料(CFRTP)和金属或连接钢和铝时,加入技术在结合不同的材料时构成了关键挑战。由于不同的材料特性和部分化学不相容,建立了没有辅助元件的连接技术,如焊接或铆接,是达到限制。通过销结构加入不同的材料已被证明是在实验室规模上生产混合多材料系统的可能策略。尽管如此,由于目前复杂,不经济的销制造过程,这项技术几乎不用于大规模生产。在这项工作中,呈现冷成型作为生产这种销的有希望的方法。在第一步骤中,从钢板(DC04)挤出销。在第二步骤中,通过将销钉直接压入材料或具有预先打孔的连接合作伙伴的填缝销,将钢板与铝(EN AW-6016)或CFRTP连接。销的材料直接从金属板挤出,从而防止与紧固件相反的额外重量。此外,直接压配是实现紧密密封接头的合适方法。在这项工作中,针对销钉以及两个不同的加入操作的挤出,显示了基本适用性和新加入过程的潜力。为了分析连接操作剪切拉伸试验的适用性。

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