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Numerical Simulation and Verification of Multi-operation Sheet Forming Process for Stamping Parts of Spiral Step Surface

机译:螺旋坡度冲压部件多功能板形成过程的数值模拟与验证

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On the basis of in-depth simulation analysis of stress and strain, thickness and forming limit changes in the property sphere during the drawing process for the stamping part of the spiral step surface, combined with the comprehensive simulation analysis of flanging, punching and other operations for the parts, it is concluded that the most obvious non-uniform changes of sheet thickness occur in the drawing process and then in the flanging process. The possibility and the distribution of tension fracture in ironing and wrinkles in thickening has been predicted and the production feasibility of low-cost drawing process without the blank holder and multi-operation forming process for stamping parts of spiral step surface. The validity of multi-operation numerical simulation results has been verified by the actual measurement of finished product rate and product thickness in trial production.
机译:在深入模拟分析的基础上应力和应变,厚度和成型限制在物业球中的拉伸过程中的螺旋步骤的绘图过程中的变化,结合了法兰,冲压等操作的综合模拟分析对于部件,得出结论是,在拉伸过程中发生了最明显的片材厚度的不均匀变化,然后在凸缘过程中发生。已经预测了熨烫和皱折在熨烫和皱纹中的可能性和分布,以及低成本绘制过程的生产可行性,而没有坯料支架和用于冲压螺旋步骤表面的多功能成型过程。通过试验生产的成品速率和产品厚度的实际测量验证了多功能数值模拟结果的有效性。

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