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Finite Element Analysis of Extrusion Process for Magnesium Alloy Internal Threads with Electromagnetic Induction-Assisted Heating and Thread Performance Research

机译:镁合金内螺纹电磁感应加热辅助挤压工艺的有限元分析及螺纹性能研究

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摘要

The casting magnesium alloy AZ91D cannot be extruded at room temperature. This paper presents a process for extruding internal threads using AZ91D heated by electromagnetic induction. The feasibility of the process is verified by finite element simulation and experiments. Using DEFORM-3D to simulate the process of extruding a M12 × 1.25 mm threaded hole by electromagnetic induction-assisted heating, the equivalent stress-strain and material flow law in the process of thread deformation was analyzed and verified by experiments. Three parameters—hole diameter, machine speed and heating temperature—were considered to study the influence of different process conditions on the forming torque. The results show that a heating temperature above 523 K can improve the plasticity of AZ91D. The hole diameter has an important influence on the forming torque. The forming process is not suitable for high-speed machining. The surface metal of the thread formed by this process has a strong deformation layer, which can improve the strength and hardness of the thread.
机译:铸造镁合金AZ91D不能在室温下挤压。本文介绍了一种利用电磁感应加热的AZ91D挤压内螺纹的方法。通过有限元仿真和实验验证了该方法的可行性。用DEFORM-3D模拟电磁感应加热挤压M12×1.25 mm螺纹孔的过程,分析并验证了螺纹变形过程中的等效应力应变和材料流动规律。考虑了三个参数:孔径,机器速度和加热温度,以研究不同工艺条件对成形扭矩的影响。结果表明,加热温度超过523 K可以提高AZ91D的可塑性。孔径对成形扭矩有重要影响。成型工艺不适用于高速加工。通过这种方法形成的线的表面金属具有很强的变形层,可以提高线的强度和硬度。

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