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首页> 外文期刊>Indian journal of engineering and materials sciences >Processing animation simulation and FEM analysis of multi-stage cold forging of stainless automotive battery fastener
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Processing animation simulation and FEM analysis of multi-stage cold forging of stainless automotive battery fastener

机译:不锈钢汽车电池紧固件多级冷锻的加工动画仿真与有限元分析

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The study proposes processing animation simulation, FEM analysis, and experimental verification of multi-stage forging of stainless automotive battery fastener. The processing animation simulation can provide the realistic motions for each pass to realize how to work for the front punch and die. Stainless automotive battery fastener requires high dimension precision and narrow tolerance. In order to save the developing cost and accumulate more production design experiences, CAD/CAE technology has been used in multi-stage cold forging with five stages to shorten our developing cycle time. In this paper, the CAD drawing is made by Inventor 3D software, then import the STL file to DEFORM-3D software to do the settings of pre-process and simulation analysis. Effective stress, effective strain, velocity field, and forging force have been shown in this study. Finally, the actual manufacture measurement results compares with simulation datum to verify the analysis acceptance. After comparing the FEM simulation results with actual forming measurements, the error rate of washer diameter is increased in fourth stage. Although the measurement results are still in tolerance, the future work is to decrease the error rate through optimizing the mold design of fourth stage. The verification is performed to reduce the error rate according to the research method proposed in the study. On the other hand, the mold life in the actual forming is found to be easily damaged in the fifth stage. In the future, production improvement should be done through modifying the design of mold and die for the third and the fourth stages, the life of mold and die is explored to reduce the forging force in the fifth stage.
机译:该研究提出了对不锈钢汽车电池扣件进行多阶段锻造的动画处理仿真,有限元分析和实验验证。处理动画仿真可以为每个遍提供逼真的动作,以实现如何对前冲模和冲模进行加工。不锈钢汽车电池紧固件需要高尺寸精度和窄公差。为了节省开发成本并积累更多的生产设计经验,CAD / CAE技术已用于具有五个阶段的多级冷锻,以缩短我们的开发周期。本文使用Inventor 3D软件制作CAD图,然后将STL文件导入DEFORM-3D软件进行预处理和仿真分析的设置。研究中显示了有效应力,有效应变,速度场和锻造力。最后,将实际制造测量结果与模拟数据进行比较,以验证分析的可接受性。在将FEM模拟结果与实际成形测量值进行比较之后,在第四阶段增加了垫圈直径的误差率。尽管测量结果仍然可以接受,但未来的工作是通过优化第四阶段的模具设计来降低错误率。根据研究中提出的研究方法进行验证以减少错误率。另一方面,发现在第五阶段中容易破坏实际成形中的模具寿命。将来,应该通过修改第三和第四阶段的模具设计来提高产量,并探索模具的寿命以减少第五阶段的锻造力。

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