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Analytical prediction of formed geometry in multi-stage single point incremental forming

机译:多级单点增量成形中成形几何形状的分析预测

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摘要

Single Point Incremental Forming (SPIF) is a die-less forming process that can be economically used for low volume production of sheet metal components. One of the limitations of SPIF is the maximum wall angle that can be formed in a single stage. To overcome this limitation, Multi-stage Single Point Incremental Forming (MSPIF) is used to form components with large wall angles. When the tool is moved from out-to-in during any stage, material present ahead of it (towards the centre of the component) moves down rigidly. If this rigid body displacement is not considered during tool path generation for MSPIF, it leads to stepped/unwanted features. Predicting the component geometry after each stage helps in monitoring the shape being developed and in turn is useful in designing intermediate stages to form required final geometry with desired accuracy. In the present work, a simple methodology is proposed to predict rigid body displacement based on tool path and process parameters (tool diameter, incremental depth, sheet thickness) used. Tool and sheet deflections due to forming force are also considered to predict final geometry of the component. Proposed methodology is validated by comparing predicted profiles with experimentally measured profiles of high wall angle axisymmetric components formed using different materials and sheet thicknesses. Predicted profiles are in good agreement with experimental results.
机译:单点增量成型(SPIF)是一种无模具成型工艺,可经济地用于小批量生产钣金零件。 SPIF的局限性之一是可以在单个阶段中形成的最大壁角。为了克服此限制,多级单点增量成型(MSPIF)用于形成具有大壁角的组件。在任何阶段,当工具从外向内移动时,位于它前面的材料(朝着组件的中心)都会刚性向下移动。如果在MSPIF的刀具路径生成过程中未考虑此刚体位移,则会导致阶梯状/不必要的特征。在每个阶段之后预测组件的几何形状有助于监视正在形成的形状,进而有助于设计中间阶段以形成具有所需精度的所需最终几何形状。在当前的工作中,提出了一种简单的方法来根据工具路径和所使用的工艺参数(工具直径,增量深度,板材厚度)预测刚体位移。还考虑了由于成形力而产生的工具和板材变形,以预测部件的最终几何形状。通过将预测轮廓与使用不同材料和板材厚度形成的高壁角轴对称部件的实验测量轮廓进行比较,验证了所提出的方法。预测的轮廓与实验结果非常吻合。

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