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Finite element simulation of the manufacturing process chain of a sheet metal assembly

机译:钣金装配制造过程链的有限元模拟

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An increasing number of components in automotive structures are today made from advanced high strength steel (AHSS). Since AHSS demonstrates more severe springback behaviour than ordinary mild steels, it requires more efforts to meet the design specification of the stamped parts. Consequently, the physical fine tuning of the die design and the stamping process can be time consuming. The trial-and-error development process may be shortened by replacing most of the physical try-outs with finite element (FE) simulations of the forming process, including the springback behaviour. Still it can be hard to identify when a stamped part will lead to an acceptable assembly with respect to the geometry and the residual stress state. In part since the assembling process itself will distort the components. To resolve this matter it is here proposed to extend the FE-simulation of the stamping process, to also include the first level subassembly stage. In this study a methodology of sequentially simulating each step in the manufacturing process of an assembly is proposed. Each step of the proposed methodology is described, and a validation of the prediction capabilities is performed by comparing with a physically manufactured assembly. The assembly is composed of three sheet metal components made from DP600 steel which are joined by spot welding. The components are designed to exhibit severe springback behaviour in order to put both the forming and subsequent assembling simulations to the test. The work presented here demonstrates that by using virtual prototyping it is possible to predict the final shape of an assembled structure.
机译:如今,汽车结构中越来越多的组件是由高级高强度钢(AHSS)制成的。由于AHSS显示出比普通低碳钢更严重的回弹行为,因此需要更多的努力来满足冲压零件的设计规范。因此,模具设计和冲压过程的物理微调可能很耗时。通过用成形过程的有限元(FE)模拟(包括回弹行为)代替大多数物理试模,可以缩短试错法的开发过程。对于几何形状和残余应力状态,仍然很难确定冲压零件何时会导致可接受的组装。部分原因是组装过程本身会使组件变形。为了解决该问题,在此建议扩展冲压过程的有限元模拟,使其也包括第一级子装配阶段。在这项研究中,提出了一种顺序模拟组件制造过程中每个步骤的方法。描述了所提出的方法的每个步骤,并且通过与物理制造的组件进行比较来执行对预测能力的验证。该组件由三个由DP600钢制成的钣金零件组成,这些零件通过点焊连接在一起。这些组件被设计为表现出严重的回弹行为,以便对成型和后续的组装仿真进行测试。本文介绍的工作表明,通过使用虚拟原型,可以预测组装结构的最终形状。

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