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Process modeling of controlled forming with time variant blank holder force using RSM method

机译:使用RSM方法以时变坯料夹持力控制成形的过程建模

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摘要

In this paper, a process model of the controlled forming process was proposed based on Response Surface Methodology (RSM). The forming process was controlled through adjusting the blank holder force (BHF) varied with the time and other process parameters. Due to the wide application and the high efficiency of the Finite Element Method (FEM), this is the chief tool used instead of experiments to carry out the controlled forming process. Deep drawing processes of material SPCC were simulated, and the simulation results were verified by the experiments. The forming processes with several types of time variant BHF were simulated and compared to find a suitable one to achieve our desired product shape. The comparison implied that the staircase-shaped time variant BHF can direct the strain path to the desired place to acquire a targeted product. Then the process model was built up using RSM to the forming process with time variant BHF and friction coefficient. The equations explored the relationship between the principal strain of fracture risk elements and the working parameters, including BHF. Three-dimensional (3D) principal strain surfaces of the element were drawn, which visualised the relationship between the principal strain and the working parameters, especially BHF. Using the model, it is feasible to acquire a fracture-free product through regulating the BHF profile.
机译:本文基于响应曲面法(RSM),提出了一种受控成形过程的过程模型。成形过程是通过调整随时间和其他工艺参数而变化的坯料夹持力(BHF)来控制的。由于有限元方法(FEM)的广泛应用和高效率,这是代替实验来执行受控成形过程的主要工具。对材料SPCC的深冲过程进行了仿真,并通过实验验证了仿真结果。模拟并比较了具有几种时变BHF的成型过程,以找到合适的成型过程以实现我们所需的产品形状。比较表明,阶梯形时变BHF可以将应变路径引导到所需位置,以获取目标产品。然后利用RSM建立时变BHF和摩擦系数的工艺模型。这些方程式探讨了断裂危险要素的主应变与工作参数(包括BHF)之间的关系。绘制了单元的三维(3D)主应变表面,该图显示了主应变与工作参数(尤其是BHF)之间的关系。使用该模型,通过调节BHF剖面图获得无裂缝产品是可行的。

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