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Research on AZ80 + 0.4Ce (wt ) Ultra-Thin-Walled Tubes of Magnesium Alloys: The Forming Process, Microstructure Evolution and Mechanical Properties

机译:AZ80 + 0.4%Ce(WT%)超薄壁管的镁合金的研究:成型过程,微观结构演化和机械性能

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摘要

Ultra-thin-walled tubes of magnesium alloys have received more and more attention in producing precision components for medical devices. Therefore, thin-walled tubes with high quality are desperately needed. In this study, the process of multi-pass variable wall thickness extrusion was carried out on an AZ80 + 0.4%Ce Mg alloy with up to five passes—one-pass backward extrusion and four-pass extension—to fabricate the seamless thin-walled tube with an inside diameter of 6.0 mm and a wall thickness of 0.6 mm. The average grain size decreased from 46.3 μm to 8.9 μm at the appropriate deformation temperature of 350 °C with the punch speed of 0.1 mm/s. X-ray diffraction (XRD), optical microscope (OM), scanning electron microscopy (SEM), and the Vickers hardness (HV) tester were utilized to study the phases, microstructure, and hardness evolution. It can be observed that low deformation temperatures (240 °C and 270 °C) and low strain (1 pass extrusion and 1 pass extension) lead to twins that occupy the grains to coordinate deformation, and a slip system was activated with the accumulation of strain. The results of the Vickers hardness test showed that twinning, precipitation of second phases, twinning dynamic recrystallization (TDRX), and work hardening were combined to change the hardness of tubes at 240 °C and 270 °C. The hardness reached 93 HV after the third pass extension without annealing at 350 °C.
机译:镁合金的超薄壁管在为医疗器械的精密部件产生了越来越多的关注。因此,迫切需要具有高质量的薄壁管。在本研究中,在AZ80 + 0.4%Ce Mg合金中进行多通物可变壁厚挤出的方法,最多五次通过后落后挤出和四段延伸 - 以制造无缝薄壁内径为6.0 mm的管,壁厚为0.6mm。平均晶粒尺寸在350℃的适当变形温度下从46.3μm至8.9μm降低,冲击速度为0.1mm / s。利用X射线衍射(XRD),光学显微镜(OM),扫描电子显微镜(SEM)和维氏硬度(HV)测试仪研究相,微观结构和硬度进化。可以观察到,低变形温度(240°C和270℃)和低菌株(1通过挤出和1次通过延伸)导致占据谷物以协调变形的双胞胎,并且通过积累激活滑动系统拉紧。维氏硬度试验的结果表明,第二阶段的孪生,猝倒,孪晶动态重结晶(TDRX)和工作硬化,改变240℃和270℃的管的硬度。在第三次通过后,硬度达到93HV,而不在350℃下退火。

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