Shape Accuracy in Single Point Incremental Forming of Conical Frustums from Titanium CP2 Sheets

Marcin Szpunar, Maciej Balcerzak, K. Żaba
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Abstract

This paper presents frustum cone drawpiece analysis made of titanium CP2 sheet by a single incremental sheet forming. Central composite design has been adopted to carry out an experiment containing 20 runs, then multi-criteria parameter optimization has been done. Optimal parameters have been validated and responses deviations do not exceed 4% compared to created models. For the drawpiece formed with optimal parameters, AGRUS optical measurement and X-ray tomography has been applied to check the obtained of the part wall thickness and general deviations compared to the CAD model. The wall angle discrepancy of the cone generatrix has also been analyzed. No gaps or ruptures have been confirmed by X-ray. The blank rolling direction has a significant effect on the drawpiece deviations. The measurement results showed deviations of the drawpiece wall angle +0.27°/- 0.06°, sheet thickness on the cone +0.012/-0.04 mm and +0.151/-0.096 mm from the reference CAD geometry.
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CP2钛板锥形锥台单点增量成形的形状精度
本文介绍了单次增量成形CP2钛板的锥台拉件分析。采用中心组合设计进行了20次试验,并进行了多指标参数优化。已验证了最优参数,与创建的模型相比,响应偏差不超过4%。采用AGRUS光学测量和x射线层析成像技术,对得到的零件壁厚及与CAD模型的一般偏差进行了校核。分析了锥体母线的壁角差异。x光未证实有间隙或破裂。毛坯轧制方向对拉拔件偏差有显著影响。测量结果显示,拉拔件壁角与CAD参考几何形状的偏差为+0.27°/- 0.06°,锥上的板材厚度与CAD参考几何形状的偏差为+0.012/-0.04 mm和+0.151/-0.096 mm。
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