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Design and modification of tool to manufacture rectangular cup of Ni-MH battery for hybrid cars

机译:混合动力汽车镍氢电池矩形杯制造工具的设计与改造

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摘要

The shape of rectangular cup of Ni-MH battery which is one of the electric power supplying parts of hybrid cars looks quite simple, but process and tool designs to product the rectangular cup are a little too hard to achieve. Some researches for sheet metal deep drawing process have been performed on the formability of a rectangular Li-Ion battery container for mobile phone. However, there are few concrete reports on the rectangular container as part of vehicles. In this study, tool design for rectangular cup in multi-stage deep drawing process is carried out using the result of FE analysis. This study identified such unfavorable mechanism in deep drawing for rectangular section with ironing and proposed a new tool design of the process through numerical simulation of drawing and ironing process with the thickness control of each wall of the deep drawn cup. Numerical simulation incorporated brick elements for a rigid-plastic FEM with an explicit time integration scheme. The results of FE analysis with the improved tool design confirmed not only reducing thinning of that wall and possibilities of failure but also improving the quality of drawing product through the modification of tools.
机译:作为混合动力汽车供电部件之一的镍氢电池矩形杯的形状看起来很简单,但是制造矩形杯的过程和工具设计却有点难以实现。对于用于手机的矩形锂离子电池容器的可成形性,已经进行了一些钣金深拉工艺的研究。但是,关于矩形集装箱作为车辆一部分的具体报道很少。在这项研究中,利用有限元分析的结果进行了多阶段深冲过程中矩形杯的工具设计。这项研究发现了这种在矩形截面深冲中进行熨烫的不利机理,并通过对深冲杯各壁的厚度进行控制的深冲和熨烫过程的数值模拟,提出了一种新的工艺设计。数值模拟结合了具有明确时间积分方案的刚塑性有限元的砖单元。有限元分析的结果表明,改进的工具设计不仅减少了壁的变薄和故障的可能性,而且还通过修改工具提高了拉拔产品的质量。

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