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Application of the Finite Element Method to the Incremental Forming of Polymer Sheets: The Thermomechanical Coupled Model and Experimental Validations

机译:有限元法在聚合物片材增量成形中的应用:热机械耦合模型和实验验证

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摘要

Single Point Incremental Forming (SPIF) is an innovative die-less low-cost forming method. Until now, there have not been viable numerical solutions regarding computational time and accuracy for the incremental forming of polymers. Unlike other numerical approaches, this novel work describes a coupled thermomechanical finite element model that simulates the SPIF of polymer sheets, where a simple elastoplastic constitutive equation rules the mechanical behavior. The resulting simulation attains a commitment between time and accuracy in the prediction of forming forces, generated and transmitted heat, as well as final part dimensions. An experimental test with default process parameters was used to determine an adequate numerical configuration (element type, mesh resolution, and material model). Finally, compared to a set of experimental tests with different thermoplastics, the proposed model, which does not consider complex rheological material models, shows a good agreement with an approximation error of less than 11% in the vertical forming force prediction.
机译:单点增量成型(SPIF)是一种创新的芯片不那么低成本的成型方法。到目前为止,对聚合物的增量形成的计算时间和准确性尚未得到可活的数值解决方案。与其他数值方法不同,该新颖作品描述了一种耦合的热机械有限元模型,用于模拟聚合物片的SPIF,其中简单的弹塑性本构方程规则是机械行为。所得到的模拟在预测成形力,产生和传递的热量的时间和准确性之间的承诺以及最终部分尺寸。使用默认过程参数的实验测试用于确定足够的数字配置(元素类型,网格分辨率和材料模型)。最后,与具有不同热塑性塑料的一组实验测试相比,该拟议模型不考虑复杂的流变材料模型,其垂直成型力预测中的近似误差小于11%的良好一致性。

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