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SHEET METAL BLANK DEVELOPMENT OF A DEEP DRAWING FAN SUPPORT USING THEORETICAL RULES AND FEM

机译:使用理论规则和FEM的深绘风扇钣金开发

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Deep drawing is a cost effective sheet metal forming process to produce many industrial components. However, complex geometrical drawn parts are difficult to form due to several modes and conditions of the material flow. Commonly problems associated to the forming operation are wrinkling and tearing defects, which affect the cost and quality of the parts. Actually, there are not theoretical methods developed in the literature yet, so the trial and error method are used to reduce or eliminate the deep drawing defects or inclusive is utilized in the earlier production stages, resulting in higher costs and longer production times. This paper describe a proposed solution to reduce or eliminate the wrinkles defects on the flanges of an industrial fan support that result from applying the forming process. An analysis procedure based on the development of the correct sheet metal blank considering three different blank geometries was proposed. The analysis include the analytical methods available in the literature, the simulation with a computer program based on the Finite Element Method (FEM) and experimentation. FEM model, simulation and results, these were validated by measuring the thickness profile on the flanges of a deep drawing part, before and after the procedure implementation. The results have shown that combining both the analytical and FEM methods, were possible to know the influence degree of the sheet metal blank geometry to reduce or eliminate the wrinkle defect and these can be used as an effective design tool.
机译:深度绘图是一种经济高效的钣金成型过程,以生产许多工业部件。然而,由于材料流动的几种模式和条件,复杂的几何拉伸部件难以形成。与成型操作相关的常见问题是皱纹和撕裂缺陷,其影响部件的成本和质量。实际上,没有在文献中开发的理论方法,因此使用试验和误差方法来减少或消除深度绘制缺陷或在早期的生产阶段使用的包容性,从而提高成本和更长的生产时间。本文描述了一种提出的解决方案,用于减少或消除施工过程的工业风扇支撑凸缘上的皱纹缺陷。提出了一种分析过程,基于考虑三个不同的空白几何形状的正确钣金坯料的开发。分析包括文献中可用的分析方法,基于有限元方法(FEM)和实验的计算机程序模拟。通过在程序实施之前和之后测量深层绘制部分的凸缘上和之后的粗曲线来验证有限元模型,模拟和结果。结果表明,组合分析和有限元方法,可以知道金属板坯几何形状的影响程度,以减少或消除皱纹缺陷,并且这些可以用作有效的设计工具。

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