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Innovative and Highly Productive Joining Technologies for Multi-Material Lightweight Car Body Structures

机译:多材料轻型车身结构的创新和高生产率的连接技术

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摘要

Driven by increasing costs for energy and raw material and especially by the European CO_2-emission laws, automotive industry faces the challenge to develop more lightweight and at the same time still rigid and crash-stable car bodies, that are affordable for large-scale production. The implementation of weight-reduced constructions depends not only on the availability of lightweight materials and related forming technologies, but also on cost-efficient and reliable joining technologies suitable for multi-material design. This article discusses the challenges and requirements for these technologies, based on the example of joining aluminium with press-hardened boron steels, what is considered as a very important material combination for affordable future lightweight mobility. Besides a presentation of recent developments for extending the process limits of conventional mechanical joining methods, new promising technologies such as resistance element welding are introduced. In addition, the performance, advantages, and disadvantages of the presented technologies are compared and discussed.
机译:在能源和原材料成本增加的推动下,尤其是在欧洲CO_2排放法规的推动下,汽车行业面临着开发更轻便,同时仍然刚性和碰撞稳定的车身的挑战,而这种车身对于大规模生产是可以承受的。减轻重量的结构的实现不仅取决于轻质材料和相关成型技术的可用性,还取决于适用于多材料设计的经济高效且可靠的连接技术。本文以铝与冲压硬化硼钢的连接为例,讨论了这些技术所面临的挑战和要求,这被认为是实现可负担的未来轻量级移动性的非常重要的材料组合。除了介绍扩展常规机械连接方法的工艺范围的最新进展之外,还介绍了一些新的有前途的技术,例如电阻元件焊接。另外,比较并讨论了所提出技术的性能,优点和缺点。

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