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Hybrid technologies for joining ultra-high-strength boron steels with aluminum alloys for lightweight car body structures

机译:用于加入超高强度硼钢与轻质车身结构的超高强度硼钢的混合动力技术

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Lightweight design in car body engineering enables the reduction of energy consumption and greenhouse gas emissions of cars, which is crucial to fulfill the increasing legislative restrictions and market demand for eco-friendly mobility. The challenge is to realize more lightweight and at the same time still rigid and crash-stable car bodies, that are affordable for a large-scale production. For cars for high volume markets, an intelligent load-oriented multi-material design with intensive use of ultra-high-strength hot-stamped boron steels combined with modern aluminum alloy sheets and cast is often the optimal solution, as these materials offer a great weight reduction potential at reasonable costs. The lack of suitable cost-efficient joining technologies for these material combinations is one of the most important barriers for the realization of affordable cars in volume productions. This paper presents and overview about recent developments and research results for suitable joining technologies.
机译:汽车车身工程中的轻质设计能够降低汽车的能量消耗和温室气体排放,这对满足越来越多的立法限制和市场需求对环保流动性的需求至关重要。挑战是实现更轻便,同时仍然是刚性和坠机的车身,这对于大规模生产负担得起。对于高批量市场的汽车,智能负载的多材料设计,具有密集使用的超高强度热冲压硼钢结合使用现代铝合金板材和铸件,通常是最佳的解决方案,因为这些材料提供了很好的解决方案重量减轻潜力以合理的成本。这些材料组合缺乏合适的成本效益的连接技术是实现体积制作中实惠的经济实惠的最重要障碍之一。本文介绍了合适的加入技术的最新发展和研究成果的概述。

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