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首页> 外文期刊>Journal of Materials Engineering and Performance >Investigation of a Modified Fine Piercing Process on Extra Deep Drawing Grade Steel
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Investigation of a Modified Fine Piercing Process on Extra Deep Drawing Grade Steel

机译:额外深层钢板改良精细刺穿过程的研究

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摘要

Cost-effective precision is the order of the day in the auto part manufacturing sector. Fine piercing, being a single stroke precision operation, is among the most widely used sheet metal forming operations in the part manufacturing industry. Compared to conventional piercing, fine piercing generates a cleaner cut edge, minimizing the need for further finishing operations. However, the application of fine piercing requires a triple action press. A modified process that uses rubber to exert counter force enabling fine piercing to be carried out using a double action press has been proposed earlier. In this work, an experiment setup for conventional fine piercing and the modified process using rubber has been designed and developed and fine piercing studies have been conducted. Finite element simulation of both processes has been carried out using the same process parameters. The force-stroke data recorded from experiments were used as the boundary condition for simulation. Simulation results suggest that the change in method of counter-force application causes negligible effects on the deformation mechanics involved. Fine pierced edge quality evaluation studies suggest that the proposed process makes no difference to the end product quality; hence, it can be used as a viable manufacturing process.
机译:经济效益的精度是汽车部件制造业当天的顺序。精致的穿孔,是单程精密操作,是零件制造业中使用最广泛使用的金属板形成操作之一。与常规刺穿相比,精细穿孔产生清洁切割边缘,最大限度地减少进一步整理操作的需求。然而,精细穿孔的应用需要三重动作压力机。使用橡胶以施加反力的改进过程,提出了使用双动力机进行精细穿孔的电压。在这项工作中,已经设计和开发了使用橡胶的传统精细穿孔和改进过程的实验设置,并开发了和精细的刺穿研究。使用相同的过程参数执行了两个过程的有限元模拟。从实验中记录的力行程数据用作模拟的边界条件。仿真结果表明,反力应用方法的变化导致对所涉及的变形力学的效果可忽略不计。精细刺穿边缘质量评估研究表明,该过程对最终产品质量没有差异;因此,它可以用作可行的制造过程。

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