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Process Design of Aluminum Tailor Heat Treated Blanks

机译:铝制裁缝热处理毛坯的工艺设计

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摘要

In many industrials field, especially in the automotive sector, there is a trend toward lightweight constructions in order to reduce the weight and thereby the CO2 and NOx emissions of the products. An auspicious approach within this context is the substitution of conventional deep drawing steel by precipitation hardenable aluminum alloys. However, based on the low formability, the application for complex stamping parts is challenging. Therefore, at the Institute of Manufacturing Technology, an innovative technology to enhance the forming limit of these lightweight materials was invented. The key idea of the so-called Tailor Heat Treated Blanks (THTB) is optimization of the mechanical properties by local heat treatment before the forming operation. An accurate description of material properties is crucial to predict the forming behavior of tailor heat treated blanks by simulation. Therefore, within in this research project, a holistic approach for the design of the THTB process in dependency of the main influencing parameters is presented and discussed in detail. The capability of the approach for the process development of complex forming operations is demonstrated by a comparison of local blank thickness of a tailgate with the corresponding results from simulation.
机译:在许多工业领域中,特别是在汽车领域中,为了减轻重量从而减少产品的CO2和NOx排放,存在向轻质结构发展的趋势。在这种情况下,一种吉祥的方法是用可沉淀硬化的铝合金代替传统的深冲钢。但是,由于成形性低,因此复杂冲压件的应用具有挑战性。因此,在制造技术研究所,发明了提高这些轻质材料的成形极限的创新技术。所谓的Tailor热处理毛坯(THTB)的关键思想是在成型操作之前通过局部热处理来优化机械性能。材料特性的准确描述对于通过仿真预测定制热处理的毛坯的成型行为至关重要。因此,在本研究项目中,提出并详细讨论了一种主要方法来设计THTB工艺的整体方法。通过将后挡板的局部毛坯厚度与仿真的相应结果进行比较,证明了该方法在复杂成形操作过程开发中的能力。

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