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Investigation of material deformation mechanism in double side incremental sheet forming

机译:双面增量板材成形中材料变形机理的研究

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摘要

Double side incremental forming (DSIF) is an emerging technology in incremental sheet forming (ISF) in recent years. By employing two forming tools at each side of the sheet, the DSIF process can provide additional process flexibility, comparing to the conventional single point incremental forming (SPIF) process, therefore to produce complex geometries without the need of using a backing plate or supporting die. Although this process has been proposed for years, there is only limited research on this process and there are still many unanswered open questions about this process. Using a newly developed ISF machine, the DSIF process is investigated in this work. Focusing on the fundamental aspects of material deformation and fracture mechanism, this paper aims to improve the understanding of the DSIF process. Two key process parameters considered in this study include the supporting force and relative position between master and slave tools. The material deformation, the final thickness distribution as well as the formability under varying conditions of these two process variables are investigated. An analytical model was developed to evaluate the stress state in the deformation zone. Using the developed model, an explicit relationship between the stress state and key process parameters was established and a drop of stress triaxiality was observed in the double contact zone, which explains the enhanced formability in the DSIF process. Based on the analytical and experimental investigation, the advancements and challenges of the DSIF process are discussed with a few conclusions drawn for future research.
机译:双面渐进成形(DSIF)是近年来渐进板材成形(ISF)的新兴技术。与传统的单点增量成型(SPIF)工艺相比,通过在薄片的每一侧使用两个成型工具,DSIF工艺可以提供额外的工艺灵活性,因此无需使用背板或支撑模具即可生产复杂的几何形状。尽管已经提出了这个过程多年,但是对此过程的研究还很有限,并且关于这个过程仍然有许多未解决的开放性问题。使用新开发的ISF机器,在这项工作中研究了DSIF过程。着眼于材料变形和断裂机理的基本方面,本文旨在增进对DSIF过程的理解。本研究中考虑的两个关键过程参数包括主工具和从工具之间的支撑力和相对位置。研究了这两个过程变量在变化条件下的材料变形,最终厚度分布以及可成形性。建立了一个分析模型来评估变形区的应力状态。使用开发的模型,建立了应力状态与关键工艺参数之间的明确关系,并在双接触区观察到了应力三轴性下降,这说明了DSIF工艺中成形性的提高。在分析和实验研究的基础上,讨论了DSIF工艺的进步和挑战,并提出了一些结论供将来研究。

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