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Improving geometrical accuracy for flanging by incremental sheet metal forming

机译:通过增量钣金成形来提高翻边的几何精度

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摘要

Incremental Sheet Forming (ISF) is a manufacturing technology for individualized and small batch production. Among the opportunities this technology provides there is the possibility of a short ramp-up time and to cover the whole production chain of sheet metal parts by using a single reconfigurable machine set-up. Since recent developments proved that manufacturing of industrial parts is feasible, finishing operations such as flanging and trimming gain importance, which are an integral part of manufacturing process chains of many sheet metal parts. This paper analyses the technological capabilities of performing flanging operations by ISF. Due to the localized forming zone and the absence of surrounding clamping devices, ISF exhibits a different material flow than conventional flanging processes. In this paper, the influence of the tool path characteristics, the flange length as well as the flange radius is analysed in order to establish a process window and to compare it to the process limits of conventional flanging operations. Since geometrical deviations occur when flanging operations are performed by ISF, a new adaptive blank holder is developed, which acts in the vicinity of the forming tool and reduces unwanted deformation outside the primary forming zone. The experimental results show the benefits of the adaptive blank holder with respect to geometric accuracy. The established process window and the adaptive blank holder hence contribute to the applicability of incremental flanging operations, such that ISF can be used for all forming and flanging operations along the process chain.
机译:增量板材成形(ISF)是用于个性化和小批量生产的制造技术。这项技术提供的机会有可能缩短启动时间,并通过使用单个可重新配置的机器设置覆盖钣金零件的整个生产链。由于最近的发展证明了工业零件的制造是可行的,因此翻边和修边等精加工操作变得非常重要,这是许多钣金零件制造过程链中不可或缺的一部分。本文分析了ISF执行翻边操作的技术能力。由于局部成型区域和周围没有夹紧装置,因此ISF与传统的翻边工艺相比,具有不同的材料流动性。在本文中,分析了刀具路径特性,法兰长度以及法兰半径的影响,以便建立过程窗口并将其与常规翻边操作的过程极限进行比较。由于在通过ISF进行翻边操作时会发生几何偏差,因此开发了一种新的自适应毛坯支架,该毛坯支架作用于成形工具附近,并减少了主要成形区域之外的不必要变形。实验结果表明,在几何精度方面,自适应毛坯支架的优势。因此,已建立的工艺窗口和自适应毛坯支架有助于增量翻边操作的适用性,从而ISF可用于工艺链中的所有成型和翻边操作。

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