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Influence of global forced-air warming on the bulge formation in shallow sloped SPIF parts

机译:全球强制空气升温对浅层倾斜雪脂零件凸起的影响

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Shallow sloped single point incrementally formed (SPIF) parts typically show undesirable geometric deviations from the designed shape due to accumulated unwanted bulging. In this study, the effect of global heating by forced-air warming on the geometric accuracy of low-angled parts with a conical geometry is investigated. A finite element (FE) model was developed to simulate the SPIF process at elevated temperatures. The simulation results show that the sheet metal is subjected to significantly higher levels of stress in cold forming condition with respect to parts formed at elevated temperatures. Due to the increase in strength caused by strain hardening, a larger area of the sheet (both in the wall and bulge regions) is affected by the tool during forming at room temperature. Softening of the material by heat-assisted forming reduces the strain hardening and extended straining of the part which results in a reduction of the bulge height and of the under-forming of the cone base.
机译:浅层倾斜单点递增形成(SPIF)部件通常表示由于积聚的不需要的凸出而从设计的形状中显示出不希望的几何偏差。在这项研究中,研究了通过强制空气对具有锥形几何形状的低角度部件的几何精度来升温的强制加热的影响。开发了有限元(FE)模型以在高温下模拟SPIF工艺。仿真结果表明,在升高温度下形成的部件,金属板金属在冷形成条件下对冷形成条件的应力显着更高。由于由应变硬化引起的强度的增加,在室温下在成型期间,纸张(壁中的较大面积(壁和凸起区域)受到工具的影响。通过热辅助成形使材料软化降低了该部件的应变硬化和延伸的紧张,这导致凸起高度和锥形底座的未形成的底部。

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