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Springback Reduction by Annealing for Incremental Sheet Forming

机译:通过退火进行增量板形成的回弹

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Incremental sheet forming (ISF) has gained much attention in the low volume production and rapid prototyping fields due to its inherent flexibility, low-overhead cost, and die-less nature. However, the geometric inaccuracy of the final achievable parts hinders this process from becoming commercially viable. One of the major sources of geometric inaccuracy is springback, which predominately occurs when the formed sheet metal is unloaded by the forming tools and released from the clamps. This paper focuses on the latter case. A practical annealing method that does not rely on complicated setups and geometry-specific compensation algorithms is proposed to reduce the springback that occurs after the unclamping process. Two clamping devices were developed, which have been demonstrated to significantly reduce the amount of springback. The capability of reducing springback by the proposed method and its potential of integrating it with other geometric accuracy improvement methods will enhance the ISF process towards future industrial applications.
机译:由于其固有的灵活性,低开销成本和缺点性,增量板成型(ISF)在低批量生产和快速原型设计领域取得了很大的关注。然而,最终可实现的部件的几何不准确性阻碍了这一过程变得可行。几何不准确的主要来源是回弹,其主要发生在形成的金属板被成形工具卸载并从夹具释放时发生。本文重点介绍后一种情况。提出了一种不依赖于复杂的设置和几何特定补偿算法的实用退火方法,以减少未扫描过程之后发生的回弹。开发了两个夹紧装置,已经证明了显着减少回弹量。通过所提出的方法减少回弹的能力及其与其他几何准确性改进方法集成的可能性将增强未来工业应用的ISF过程。

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