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Research on the Micro Sheet Stamping Process Using Plasticine as Soft Punch

机译:橡皮泥软冲模微压片工艺的研究

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Plasticine is widely used in the analysis of metal forming processes, due to its excellent material flow ability. In this study, plasticine is used as the soft punch to fabricate array micro-channels on metal sheet in the micro sheet stamping process. This is because plasticine can produce a large material flow after being subjected to force and through the material flow, the plasticine can cause the sheet to fill into the micro-channels of the rigid die, leading to the generation of micro-channels in the sheet. The distribution of array micro-channels was investigated as well as the influence of load forces on the sheet deformations. It was found that the depth of micro-channels increases as the load force increases. When the load force reaches a certain level, a crack can be observed. The micro sheet stamping process was also investigated by the method of numerical simulation. The obtained experimental and numerical results for the stamping process showed that they were in good agreement. Additionally, from the simulation results, it can be seen that the corner region of the micro-channel-shape work piece has a risk to crack due to the existence of maximum von Mises stress and significant thinning.
机译:橡皮泥由于其出色的材料流动能力而被广泛用于金属成型过程的分析。在这项研究中,橡皮泥被用作软冲头,以在微板冲压过程中在金属板上制造阵列微通道。这是因为橡皮泥在受到力后会产生较大的物料流,并且通过物料流,橡皮泥会导致片材填充到刚性模具的微通道中,从而导致片材中产生微通道。研究了阵列微通道的分布以及负载力对板变形的影响。已经发现,微通道的深度随着负载力的增加而增加。当负载力达到一定水平时,可以观察到裂纹。还通过数值模拟方法研究了微片材冲压过程。冲压过程的实验结果和数值结果表明,两者吻合良好。另外,从仿真结果可以看出,由于存在最大的冯·米塞斯应力和明显的薄化,微通道形状的工件的角部区域具有开裂的风险。

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