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Optimized Decision-Making in Joining Selection by Alternative-Based Material and Design-Oriented Changes

机译:通过替代的材料和设计为导向的更改选择选择的决策

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Today, and as never before, multi-material systems are in the spotlight of technically advanced products (e.g., automotive industry) due to their far-reaching potentials with regard to weight, cost and resource savings. However, these structural and functional improvements pose a great challenge for its cross-component joining options, which have only been partly addressed systematically in scientific research so far. Thus, this contribution presents an alternative-based material and design-oriented approach for an optimized decision-making in a sustainable joining selection. Herein, the authors highlight the complexity in the selection of an optimum joining technology, on the one hand, and the potential analysis of proposed, sustainable-driven changes within the key premises of material (cluster with similar mechanical but partly different technological properties) and design (catalogs with minor geometrical advices, e.g., flange position) to fulfill a holistically best evaluated systems design, on the other hand.
机译:今天,由于其在重量,成本和资源节省的潜力深远的潜力,如此,多材料系统在技术先进的产品(例如,汽车工业)的聚焦中。然而,这些结构和功能改进对其交叉组成的联系选项构成了巨大挑战,这迄今为止才会在科学研究中系统地进行了部分地解决。因此,该贡献呈现了一种基于替代的材料和设计型方法,用于在可持续的加入选择中进行优化的决策。在此,作者在一方面突出了选择最佳连接技术的复杂性,以及在材料的关键房屋内提出的可持续驱动的变化的潜在分析(具有类似机械的簇,但部分不同的技术特性)和设计(具有次要几何建议的目录,例如法兰位置),另一方面符合全能最佳评估的系统设计。

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