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Wear Improvement of Tools in the Cold Forging Process for Long Hex Flange Nuts

机译:长六角法兰螺母冷锻过程中工具的磨损改善

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摘要

Cold forging has played a critical role in fasteners and has been widely used in automotive production, manufacturing, aviation and 3C (Computer, Communication, and Consumer electronics). Despite its extensive use in fastener forming and die design, operator experience and trial and error make it subjective and unreliable owing to the difficulty of controlling the development schedule. This study used finite element analysis to establish and simulate wear in automotive repair fastener manufacturing dies based on actual process conditions. The places on a die that wore most quickly were forecast, with the stress levels obtained being substituted into the Archard equation to calculate die wear. A 19.87% improvement in wear optimization occurred by applying the Taguchi quality method to the new design. Additionally, a comparison of actual manufacturing data to simulations revealed a nut forging size error within 2%, thereby demonstrating the accuracy of this theoretical analysis. Finally, SEM micrographs of the worn surfaces on the upper punch indicate that the primary wear mechanism on the cold forging die for long hex flange nuts was adhesive wear. The results can simplify the development schedule, reduce the number of trials and further enhance production quality and die life.
机译:冷锻在紧固件中起着至关重要的作用,已广泛用于汽车生产,制造,航空和3C(计算机,通信和消费电子)。尽管它在紧固件成型和模具设计中得到了广泛的应用,但由于难以控制开发进度,因此操作员的经验和反复试验使其主观且不可靠。这项研究使用有限元分析来根据实际工艺条件建立并模拟汽车维修紧固件制造模​​具的磨损。预测了模具中磨损最快的位置,并将获得的应力水平代入Archard方程以计算模具磨损。通过在新设计中应用Taguchi质量方法,磨损优化提高了19.87%。此外,将实际制造数据与仿真结果进行比较后发现,螺母锻造尺寸误差在2%以内,从而证明了该理论分析的准确性。最后,上冲头的磨损表面的SEM显微照片表明,长六角法兰螺母的冷锻模上的主要磨损机制是粘合剂磨损。结果可以简化开发进度,减少试验次数,并进一步提高生产质量和模具寿命。

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