Form-based manufacturing of aluminium and steel auxiliary joining elements as the basis for an efficient joining operation

T. Borgert
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引用次数: 0

Abstract

Abstract. Reducing the weight of vehicles can significantly lower the energy or fuel consumed and thus the emissions during operation. One possibility to assess this is the use of a property adapted multi-material systems containing high strength steel, light metals like aluminium or magnesium and fibre reinforced plastics. While expanding the number of materials used new challenges arise for the production and furthermore the joining technology to manufacture the vehicle made of the multi-material systems. One approach to overcome these challenges is to use innovative and adaptable joining techniques which allows the manufacturing of joints of different material combinations. Extensive research activities on the two stage thermo-mechanical joining process with adaptable joining elements was able to demonstrate the great potentials in terms of joining dissimilar materials with good strength. The previously kinematic and path-based fabrication of auxiliary joining elements is modified in this publication to a form-based approach with a perspective of establishing an efficient process chain using easily and cheaply available rods. Based on the new approach to produce the auxiliary joining elements, it can be demonstrated that a reproducible production of the geometry is possible for the investigated steel as well as aluminium material.
铝和钢辅助连接部件的成型制造是高效连接操作的基础
摘要减轻车辆重量可显著降低能源或燃料消耗量,从而减少运行过程中的废气排放。要实现这一目标,一种可行的方法是使用一种性能适应性强的多材料系统,该系统包含高强度钢、铝或镁等轻金属以及纤维增强塑料。在使用更多材料的同时,也给生产带来了新的挑战,同时也给制造多材料系统车辆的连接技术带来了新的挑战。克服这些挑战的方法之一是采用创新的、适应性强的连接技术,从而可以制造不同材料组合的连接件。通过对带有可调整连接元件的两阶段热机械连接工艺的广泛研究,证明了在连接具有良好强度的异种材料方面的巨大潜力。在本出版物中,以前基于运动学和路径的辅助连接元件制造方法被修改为基于形状的方法,目的是利用易于获得且廉价的棒材建立高效的工艺链。根据生产辅助连接元件的新方法,可以证明所研究的钢材和铝材的几何形状是可以重复生产的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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