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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >An assessment of various process strategies for improving precision in single point incremental forming
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An assessment of various process strategies for improving precision in single point incremental forming

机译:对提高单点增量成形精度的各种工艺策略的评估

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摘要

Single point incremental forming (SPIF) is a process with the capability to form complex geometries using a tool of very simple geometry, without the need for a matching die. However, large elastic springback resulting from the die-less nature of the process can cause problems if high levels of accuracy are required. The aim of this investigation is to use numerical modelling to investigate different strategies to improve the process precision. A finite-element (FE) model has been used to investigate the effects of adding a backing plate, a supporting kinematic tool and modifying the final stage of the tool path. The results show that the backing plate will minimise the sheet bending near to the initial tool contact location; the additional kinematic tool will reduce springback; and the extension of the tool path across the base of the sheet will eliminate the pillow effect. The cumulative effect of introducing these features to the process shows an improvement in the overall accuracy of the profile and in the thickness distributions of the final product. The results contribute to a better understanding of springback in SPIF.
机译:单点增量成型(SPIF)是一种能够使用非常简单的几何形状的工具而无需匹配的模具来形成复杂几何形状的工艺。但是,如果需要很高的精度,则由于工艺的无模具性而产生的大的弹性回弹会引起问题。这项研究的目的是使用数值模型来研究不同的策略,以提高过程精度。有限元(FE)模型已用于研究添加背板,支撑运动学工具以及修改工具路径最后阶段的效果。结果表明,背板将使靠近工具初始接触位置的板材弯曲最小化。额外的运动学工具将减少回弹;刀具路径跨过板材底部的延伸将消除枕形效应。将这些特征引入工艺的累积效果表明,轮廓的整体精度和最终产品的厚度分布都有所改善。结果有助于更好地理解SPIF中的回弹。

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