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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Numerical and experimental investigations in electromagnetic riveting with different rivet dies
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Numerical and experimental investigations in electromagnetic riveting with different rivet dies

机译:用不同铆钉模具电磁铆接的数值和实验研究

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摘要

In this work, the numerical simulations and electromagnetic riveting (EMR) experiments were conducted to investigate microstructure evolution and the forming mechanism of adiabatic shear bands (ASBs). And the effects of rivet dies on microstructure distributions in formed heads and mechanical properties of riveted structures were systematically explored. The impact velocity and deformation distribution results demonstrated that the proposed numerical method was accurate and reliable. The simulation results showed the slope angle of rivet dies notably affected the plastic flow of materials, and then determined the microstructure distribution in formed heads. The combined effects of inhomogeneous plastic flow and thermal softening were accounted for the forming of ASBs. The formed heads had two obvious ASBs (upper and lower ASB) for the 40 degrees rivet die and flat rivet die. The formed heads only had the lower ASB and no clear upper for the 60 degrees rivet die and 80 degrees rivet die. The pull-out test results showed that the specific rivet die could improve the mechanical properties of the EMR joints, which contribute to the engineering applications of EMR riveted structures.
机译:在这项工作中,进行了数值模拟和电磁铆接(EMR)实验以研究绝热剪切带(ASB)的微观结构演化和成形机理。系统地探索了铆钉对形成头部的微观结构分布的铆接和铆接结构的机械性能的影响。冲击速度和变形分布结果表明,所提出的数值方法准确可靠。仿真结果表明,铆钉的斜角模具显着影响了材料的塑料流动,然后确定了形成的头部的微观结构分布。占ASB的形成的非均匀塑料流动和热软化的综合影响。形成的头部具有两个明显的ASB(上下ASB),用于40度铆钉模具和扁平铆钉模具。形成的头部仅具有较低的ASB,对于60度铆钉管芯和80度铆钉模具,没有透明的上部。拉出试验结果表明,特定铆钉模具可以改善EMR关节的机械性能,这有助于EMR铆接结构的工程应用。

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