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Influence of Process Parameters on T-shape Tube HydroForming Characteristics for Magnesium Alloy

机译:工艺参数对镁合金T形管液压成形特性的影响

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Due to the light weight and electromagnetic interference shielding capabilities in magnesium alloy material, it is widely utilized in 3C electronic components and automobile parts. However, its formability is very poor due to the phenomenon of negative strain hardening rate appearing as the deformation in large strain range, so it is usually formed as die casting or casting styles leads to much scrap, and manufacturing cost is thus increased. The objective of this study is to investigate the effect of process parameters on T-shape tube hydro-forming characteristics for magnesium alloy and it may offer the data resulting from the analysis to predict an acceptable product of tube fitting for magnesium alloy forming in industry. AZ31 magnesium alloy tube is used as the billet material for hydro-forming with hydraulic pressure as the main forming power combined with the mechanical auxiliary force from the punch to fabricate the T-shape tubing products. Finite element code DEFORM-3D is adopted to investigate the forming states of T-shape tube forming, by changing process parameters; such as punch velocity, hydraulic pressure, fillet radius of the die and tool-workpiece interface friction etc. to investigate the material flow of tube fitting, wall thickness variations, and stress and strain distributions. By qualifying the forming processes whether if it is completed or not, and synthesizing the overall analysis and judgment, we establish an admissible level of process parameter range for complete tube manufacture. The results show that suitable mechanical force can help material flow, prevent large strain deformation falling into the area of negative strain hardening rate, enhance magnesium alloy to become easy in forming and make tube fitting to be formed successfully.
机译:由于镁合金材料中的重量轻和电磁干扰屏蔽能力,它广泛用于3C电子元件和汽车部件。然而,由于在大应变范围内的变形现象,其可成形性非常差,因此它通常形成为压铸或铸造件导致太多废料,因此增加了制造成本。本研究的目的是探讨工艺参数对镁合金的T形管液压形成特性的影响,它可以提供由分析来预测工业中镁合金的可接受产物的数据。 AZ31镁合金管用作坯料成型的坯料,液压为主成型功率与来自冲头的机械辅助力相结合,以制造T形管材产物。采用有限元码抗变形-3D来研究T形管成型的成形状态,通过改变工艺参数;如冲压速度,液压,模具的圆角半径和工具工件界面摩擦等,以研究管拟合,壁厚变化和应力和应变分布的材料流动。通过符合成型过程,无论是是否已完成,并合成整体分析和判断,我们都建立了完全管制造的可接受水平的工艺参数范围。结果表明,合适的机械力可以有助于材料流动,防止大应变变形落入负应变硬化速率的面积,增强镁合金变得容易成型,使管装配成功形成。

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