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Effect of tool geometry on the velocity and strain rate fields in continuous rotary extrusion of magnesium AZ91 alloy

机译:AZ91镁合金连续旋转挤压中刀具几何形状对速度和应变率场的影响

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The Continuous Rotary Extrusion (CRE) process is also known in literature under ConformTMname and it is mainly used for the continuous extrusion of aluminum and copper alloys. In the CRE process a feedstock in the form of rod, powders or chips, is fed into the groove of the rotating wheel. CRE has lot to offer when compared to other more conventional extrusion processes such as low energy input, no limit for billet length because it is a continuous process as well as improved material physical properties due to plastic deformation under constant parameters. Therefore, the CRE process is of our interest in forming Mg alloys. In the presented study, the effect of tool geometry on the velocity and strain rate fields in the deformation zone are investigated by FEM simulation of the CRE extrusion of magnesium alloys AZ91. The FEM process model was developed in commercially available DEFORM 3DTMsoftware. The flow stress data for AZ91 magnesium alloy were obtained from reported literature. The metal flow predictions for two different feeder plate and presence of draft angle in exit die have been presented.
机译:连续旋转挤压(CRE)工艺在ConformTM名称下也是已知的,它主要用于铝和铜合金的连续挤压。在CRE过程中,棒状,粉末状或碎片状的原料被送入旋转轮的凹槽中。与其他更常规的挤压工艺相比,例如,低能量输入,坯料长度不受限制,CRE具有很多优势,因为它是连续工艺,并且由于在恒定参数下的塑性变形而改善了材料物理性能。因此,CRE工艺在形成Mg合金方面引起我们的兴趣。在本研究中,通过镁合金AZ91的CRE挤压的有限元模拟,研究了刀具几何形状对变形区内速度和应变率场的影响。 FEM过程模型是使用可商购的DEFORM 3DTM软件开发的。 AZ91镁合金的流变应力数据是从报道的文献中获得的。提出了两种不同进料盘的金属流动预测以及出口模具中拔模角的存在。

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