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Microstructural effect and material homogenization of thermal- hydroforming magnesium alloy tubes

机译:热液成形镁合金管的微观组织效应和材料均质化

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The microstrctural evolution pre and post heat treatment is critical to achieve a successful product for metal forming process. This paper aims to investigate the microstructual effect of the magnesium alloy tubes undergone various heat treatment conditions to achieve material homogenization. The heat treatment conditions under various periods of time (1, 2, 6, 12 and 30 hours) at 400 °C were employed to investigate the microstructural effect on hydroforming magnesium tubes. The greatly reduced impurity embedded in grain boundaries and more uniform grain sizes do indicate the improvement of material strength and ductility. To validate the conclusion, corresponding tensile tests at the different temperatures (20 °C and 200 °C) were carried out. The increased engineering strain in two directions (hoop and longitudinal) implies that the microstructural evolution is unquestionably useful to enhance the ductility of the magnesium tubes. Subsequently, the tubes after optimal heat treatment condition at 400 °C for 6 hours were used to further carry out the thermal hydroforming process for validation. The defect-free hydroformed tubes were produced under the same working condition, which is unable to be achieved for tubes without the heat-treatment process.
机译:热处理前后的微观结构演变对于获得成功的金属成型工艺产品至关重要。本文旨在研究镁合金管在各种热处理条件下的微观结构效应,以实现材料均质化。采用400℃下不同时间段(1、2、6、12和30小时)的热处理条件来研究对液压成型镁管的微观结构影响。大大减少了嵌入晶界的杂质和更均匀的晶粒尺寸确实表明材料强度和延展性的提高。为了验证该结论,在不同温度(20°C和200°C)下进行了相应的拉伸试验。在两个方向(箍向和纵向)上增加的工程应变意味着,微结构的演变无疑对增强镁管的延展性有用。随后,将经过最佳热处理条件(在400°C下进行了6个小时)的试管进一步用于热液压成型工艺进行验证。无缺陷的液压成型管是在相同的工作条件下生产的,如果不进行热处理,则无法实现。

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